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a/docs/_files/web-services/ows_tutorial_3.png b/docs/_media/web-services/ows_tutorial_3.png similarity index 100% rename from docs/_files/web-services/ows_tutorial_3.png rename to docs/_media/web-services/ows_tutorial_3.png diff --git a/docs/_files/web-services/ows_tutorial_4.png b/docs/_media/web-services/ows_tutorial_4.png similarity index 100% rename from docs/_files/web-services/ows_tutorial_4.png rename to docs/_media/web-services/ows_tutorial_4.png diff --git a/docs/_files/web-services/ows_tutorial_5.png b/docs/_media/web-services/ows_tutorial_5.png similarity index 100% rename from docs/_files/web-services/ows_tutorial_5.png rename to docs/_media/web-services/ows_tutorial_5.png diff --git a/docs/_files/web-services/ows_tutorial_6.png b/docs/_media/web-services/ows_tutorial_6.png similarity index 100% rename from docs/_files/web-services/ows_tutorial_6.png rename to docs/_media/web-services/ows_tutorial_6.png diff --git a/docs/_templates/card-clickable-list-v1.rst b/docs/_templates/card-clickable-list-v1.rst index 48d777e9c..bf0584e1c 100644 --- a/docs/_templates/card-clickable-list-v1.rst +++ b/docs/_templates/card-clickable-list-v1.rst @@ -17,7 +17,7 @@ .. container:: image-container - .. image:: {{ card.image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ card.image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery .. rubric:: {{ card.name }} diff --git a/docs/_templates/card-description-list-v1.rst b/docs/_templates/card-description-list-v1.rst index 163c67fec..4ede33765 100644 --- a/docs/_templates/card-description-list-v1.rst +++ b/docs/_templates/card-description-list-v1.rst @@ -16,7 +16,7 @@ .. container:: image-container - .. image:: {{ card.image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ card.image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery .. rubric:: {{ card.name }} diff --git a/docs/_templates/external-data-v1.rst b/docs/_templates/external-data-v1.rst index ee210fe21..1e2e6ea62 100644 --- a/docs/_templates/external-data-v1.rst +++ b/docs/_templates/external-data-v1.rst @@ -78,7 +78,7 @@ .. container:: - .. image:: {{ Data.header_image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ Data.header_image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery .. container:: diff --git a/docs/_templates/home-v1.rst b/docs/_templates/home-v1.rst index 47b63e448..05f51ede2 100644 --- a/docs/_templates/home-v1.rst +++ b/docs/_templates/home-v1.rst @@ -43,7 +43,7 @@ .. container:: - .. image:: /_files/default/dea-earth-thumbnail.jpg + .. image:: /_media/default/dea-earth-thumbnail.jpg :class: no-gallery .. container:: showcase-panel bg-gradient-forest reverse @@ -59,7 +59,7 @@ .. container:: - .. image:: /_files/cmi/Kakadu-Mary_TCW-percentiles-wide_1.jpg + .. image:: /_media/cmi/Kakadu-Mary_TCW-percentiles-wide_1.jpg :class: no-gallery .. container:: showcase-panel bg-gradient-stone @@ -75,7 +75,7 @@ .. container:: - .. image:: /_files/validation/validation-drone-thumbnail.jpg + .. image:: /_media/validation/validation-drone-thumbnail.jpg :class: no-gallery .. container:: showcase-panel bg-gradient-space reverse @@ -91,7 +91,7 @@ .. container:: - .. image:: /_files/reference/Reporting_dashboard.png + .. image:: /_media/reference/Reporting_dashboard.png :class: no-gallery .. container:: showcase-panel @@ -111,5 +111,5 @@ .. container:: - .. image:: /_files/themes/sea-ocean-and-coast.* + .. image:: /_media/themes/sea-ocean-and-coast.* :class: no-gallery diff --git a/docs/_templates/product-v1.rst b/docs/_templates/product-v1.rst index a50327f55..a150153ae 100644 --- a/docs/_templates/product-v1.rst +++ b/docs/_templates/product-v1.rst @@ -83,7 +83,7 @@ .. container:: - .. image:: {{ data.header_image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ data.header_image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery .. container:: diff --git a/docs/_templates/product-v2.rst b/docs/_templates/product-v2.rst index 248d999e4..9b12b6da0 100644 --- a/docs/_templates/product-v2.rst +++ b/docs/_templates/product-v2.rst @@ -244,7 +244,7 @@ .. container:: - .. image:: {{ page.data.header_image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ page.data.header_image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery {% endset %} diff --git a/docs/_templates/report-list-v1.rst b/docs/_templates/report-list-v1.rst index 173c378ef..faf85cd13 100644 --- a/docs/_templates/report-list-v1.rst +++ b/docs/_templates/report-list-v1.rst @@ -28,7 +28,7 @@ .. container:: - .. image:: {{ report.image or "/_files/default/dea-earth-thumbnail.jpg" }} + .. image:: {{ report.image or "/_media/default/dea-earth-thumbnail.jpg" }} :class: no-gallery :target: {{ report.link }} {% endfor %} diff --git a/docs/conf.py b/docs/conf.py index 040d4c047..2c41566af 100644 --- a/docs/conf.py +++ b/docs/conf.py @@ -17,7 +17,7 @@ copyright = f"{current_year}, Geoscience Australia" author = "Geoscience Australia" -html_static_path = ["_static", "_files"] +html_static_path = ["_static", "_media"] templates_path = ["_layouts", "_templates"] html_extra_path = ["robots.txt"] source_suffix = [".rst", ".md"] @@ -51,7 +51,7 @@ exclude_patterns += utilities.optional_exclude_pattern("LOCAL_ENABLE_TECH_ALERTS_CHANGELOG", "tech-alerts-changelog") html_title = "DEA Knowledge Hub" -html_logo = "_files/logos/ga-dea-combined-logo.svg" +html_logo = "_media/logos/ga-dea-combined-logo.svg" html_favicon = "_static/favicons/dea-favicon.ico" html_theme = 'pydata_sphinx_theme' language = "en" @@ -101,7 +101,7 @@ sitemap_url_scheme = "{link}" ogp_site_url = "https://knowledge.dea.ga.gov.au/" -ogp_image = "/_files/logos/dea-logo-inline.png" +ogp_image = "/_media/logos/dea-logo-inline.png" sys.path.insert(0, os.path.abspath("./notebooks/Tools")) autosummary_generate = ["./notebooks/Tools/index.rst"] diff --git a/docs/data/_data.yaml b/docs/data/_data.yaml index 6bc822ad6..11f74c78b 100644 --- a/docs/data/_data.yaml +++ b/docs/data/_data.yaml @@ -4,19 +4,19 @@ description: Find metadata on our data products. cards: - name: Baseline satellite data link: /data/theme/baseline-satellite-data/ - image: /_files/themes/baseline-satellite-data.* + image: /_media/themes/baseline-satellite-data.* - name: Land and vegetation link: /data/theme/land-and-vegetation/ - image: /_files/themes/land-and-vegetation.* + image: /_media/themes/land-and-vegetation.* - name: Inland water link: /data/theme/inland-water/ - image: /_files/themes/inland-water.* + image: /_media/themes/inland-water.* - name: Sea, ocean, and coast link: /data/theme/sea-ocean-and-coast/ - image: /_files/themes/sea-ocean-and-coast.* + image: /_media/themes/sea-ocean-and-coast.* - name: Hazards link: /data/theme/hazards/ - image: /_files/themes/hazards.* + image: /_media/themes/hazards.* - name: External data link: /data/theme/external-data/ - image: /_files/themes/external-data.* + image: /_media/themes/external-data.* diff --git a/docs/data/archive/clone-of-dea-wetlands-insight-tool-qld/_data.yaml b/docs/data/archive/clone-of-dea-wetlands-insight-tool-qld/_data.yaml index c1100ba71..8b05b2ed1 100644 --- a/docs/data/archive/clone-of-dea-wetlands-insight-tool-qld/_data.yaml +++ b/docs/data/archive/clone-of-dea-wetlands-insight-tool-qld/_data.yaml @@ -5,7 +5,7 @@ title: DEA Wetlands Insight Tool (QLD) long_title: Wetlands Insight Tool Queensland Wetlands Polygons -header_image: /_files/cmi/PlaceholderWIT.PNG +header_image: /_media/cmi/PlaceholderWIT.PNG version: 2.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_details.md b/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_details.md index 93d22bdb6..bac8f1906 100644 --- a/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_details.md +++ b/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_details.md @@ -111,7 +111,7 @@ When the time series cloud and cloud shadow detection procedure completed. The d In this step, pixels in the time series with BA>0.45 is labelled as cloud (with mask value = 3), while BA<=-0.0999 is labelled as invalid (with mask value = 1). The procedure is shown in Figure 1. -:::{figure} /_files/dea-cloud-and-cloud-shadow-mask/cloud_1.png +:::{figure} /_media/dea-cloud-and-cloud-shadow-mask/cloud_1.png :alt: identify extreme data Figure 1. Identify extreme and invalid data. @@ -121,7 +121,7 @@ Figure 1. Identify extreme and invalid data. The updated time series is shown in Figure 2. -:::{figure} /_files/dea-cloud-and-cloud-shadow-mask/cloud_2.png +:::{figure} /_media/dea-cloud-and-cloud-shadow-mask/cloud_2.png :alt: Updated time series with extreme and invalid pixels removed Figure 2. Updated time series with extreme and invalid pixels removed @@ -131,7 +131,7 @@ Figure 2. Updated time series with extreme and invalid pixels removed This is done by applying local time series noise filter on the whole time series, the time series with identified cloud and cloud shadow pixels is shown in Figure 3. -:::{figure} /_files/dea-cloud-and-cloud-shadow-mask/cloud_3.png +:::{figure} /_media/dea-cloud-and-cloud-shadow-mask/cloud_3.png :alt: Time series with cloud and cloud shadow pixels identified Figure 3. Time series with cloud and cloud shadow pixels identified @@ -141,7 +141,7 @@ Figure 3. Time series with cloud and cloud shadow pixels identified In the current implementation, the local time series noise filter was applied 3 times with N=1, 2 times with N=2 and 1 time with N=3, where 3N is the length of the local time series noise filter. The filtered time series after Step 4 is shown in Figure 4. -:::{figure} /_files/dea-cloud-and-cloud-shadow-mask/cloud_4.png +:::{figure} /_media/dea-cloud-and-cloud-shadow-mask/cloud_4.png :alt: Time series with cloud and cloud shadow pixels removed Figure 4. Time series with cloud and cloud shadow pixels removed @@ -151,7 +151,7 @@ Figure 4. Time series with cloud and cloud shadow pixels removed Detect ground objects which are wrongly classified as clouds and cloud shadows. Output the identified cloud and cloud shadow pixels as a cloud and cloud shadow mask, as shown in Figure 5. -:::{figure} /_files/dea-cloud-and-cloud-shadow-mask/cloud_5.png +:::{figure} /_media/dea-cloud-and-cloud-shadow-mask/cloud_5.png :alt: The output of cloud and cloud shadow mask for the time series Figure 5. The output of cloud and cloud shadow mask for the time series diff --git a/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_quality.md b/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_quality.md index ab482e967..3165411ab 100644 --- a/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_quality.md +++ b/docs/data/archive/dea-cloud-and-cloud-shadow-mask-sentinel-2-msi/_quality.md @@ -2,11 +2,11 @@ A Sentinel-2 true colour image and a **cloud mask** created by the cloud and cloud shadow mask algorithm -![true colour cloud image p1](/_files/dea-cloud-and-cloud-shadow-mask/cloud_org_1.PNG) ![cloud mask image p1](/_files/dea-cloud-and-cloud-shadow-mask/cloud_mask_1.PNG) +![true colour cloud image p1](/_media/dea-cloud-and-cloud-shadow-mask/cloud_org_1.PNG) ![cloud mask image p1](/_media/dea-cloud-and-cloud-shadow-mask/cloud_mask_1.PNG) A Sentinel-2 true colour image and a **cloud shadow mask** created by the cloud and cloud shadow mask algorithm -![true colour image shadow 1](/_files/dea-cloud-and-cloud-shadow-mask/shadow_org_1.PNG)![cloud shadow mask p1](/_files/dea-cloud-and-cloud-shadow-mask/shadow_mask_1.PNG) +![true colour image shadow 1](/_media/dea-cloud-and-cloud-shadow-mask/shadow_org_1.PNG)![cloud shadow mask p1](/_media/dea-cloud-and-cloud-shadow-mask/shadow_mask_1.PNG) Some of the earlier multi-granule Sentinel-2 L1C products may contain incorrect Military Grid Reference System (MGRS) granule ID when comparing against product extent metadata. No TSmask product will be generated for such granule that contains incorrect metadata. diff --git a/docs/data/archive/dea-intertidal-suite-draft-product-testing-only/_data.yaml b/docs/data/archive/dea-intertidal-suite-draft-product-testing-only/_data.yaml index f579a4c69..a9b2e076e 100644 --- a/docs/data/archive/dea-intertidal-suite-draft-product-testing-only/_data.yaml +++ b/docs/data/archive/dea-intertidal-suite-draft-product-testing-only/_data.yaml @@ -5,7 +5,7 @@ title: DEA Intertidal Suite (Draft - Product Testing only) long_title: National Intertidal Product Suite v1.0.0 -header_image: /_files/cmi/nidem 2 - crop 3_1.jpg +header_image: /_media/cmi/nidem 2 - crop 3_1.jpg version: 1.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/archive/draft-dea-waterbodies-landsat/_data.yaml b/docs/data/archive/draft-dea-waterbodies-landsat/_data.yaml index 2d387f6d1..cd731a984 100644 --- a/docs/data/archive/draft-dea-waterbodies-landsat/_data.yaml +++ b/docs/data/archive/draft-dea-waterbodies-landsat/_data.yaml @@ -5,7 +5,7 @@ title: DRAFT DEA Waterbodies (Landsat) long_title: Geoscience Australia Landsat Waterbodies Collection 3 -header_image: /_files/cmi/waterbodies.jpg +header_image: /_media/cmi/waterbodies.jpg version: 3.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/external-data/abares-clum-2020/_data.yaml b/docs/data/external-data/abares-clum-2020/_data.yaml index b37d44096..b30bd6334 100644 --- a/docs/data/external-data/abares-clum-2020/_data.yaml +++ b/docs/data/external-data/abares-clum-2020/_data.yaml @@ -5,7 +5,7 @@ title: ABARES CLUM 2020 long_title: ABARES Catchment Scale Land Use of Australia - Update December 2020 -header_image: /_files/external-data/abares_clum_2020.thumbnail.jpg +header_image: /_media/external-data/abares_clum_2020.thumbnail.jpg product_type: null spatial_data_type: Raster time_span: diff --git a/docs/data/external-data/abares-clum-2023/_data.yaml b/docs/data/external-data/abares-clum-2023/_data.yaml index 3ec20ddde..8ce593dbf 100644 --- a/docs/data/external-data/abares-clum-2023/_data.yaml +++ b/docs/data/external-data/abares-clum-2023/_data.yaml @@ -5,7 +5,7 @@ title: ABARES CLUM 2023 long_title: ABARES Catchment Scale Land Use of Australia - Update December 2023 -header_image: /_files/external-data/abares_clum_2023.thumbnail.jpg +header_image: /_media/external-data/abares_clum_2023.thumbnail.jpg product_type: null spatial_data_type: Raster time_span: diff --git a/docs/data/external-data/ga-ausbathytopo-250m/_data.yaml b/docs/data/external-data/ga-ausbathytopo-250m/_data.yaml index 9fc9cffd9..e53574d4f 100644 --- a/docs/data/external-data/ga-ausbathytopo-250m/_data.yaml +++ b/docs/data/external-data/ga-ausbathytopo-250m/_data.yaml @@ -5,7 +5,7 @@ title: GA AusBathyTopo 250m Grid long_title: Geoscience Australia AusBathyTopo 250m (Australia) 2023 Grid -header_image: /_files/external-data/ga_ausbathytopo250m_2023.thumbnail.jpg +header_image: /_media/external-data/ga_ausbathytopo250m_2023.thumbnail.jpg product_type: null spatial_data_type: Raster time_span: diff --git a/docs/data/external-data/ga-multi-scale-topographic-position/_data.yaml b/docs/data/external-data/ga-multi-scale-topographic-position/_data.yaml index 47d3eaf87..cea0019ff 100644 --- a/docs/data/external-data/ga-multi-scale-topographic-position/_data.yaml +++ b/docs/data/external-data/ga-multi-scale-topographic-position/_data.yaml @@ -5,7 +5,7 @@ title: GA Multi-scale Topographic Position long_title: Geoscience Australia Multi-scale Topographic Position Image of Australia -header_image: /_files/external-data/ga_mtpi_thumbnail.jpg +header_image: /_media/external-data/ga_mtpi_thumbnail.jpg product_type: null spatial_data_type: Raster time_span: diff --git a/docs/data/external-data/ga-srtm-1-second-dem/_data.yaml b/docs/data/external-data/ga-srtm-1-second-dem/_data.yaml index 9920668f1..4f003163d 100644 --- a/docs/data/external-data/ga-srtm-1-second-dem/_data.yaml +++ b/docs/data/external-data/ga-srtm-1-second-dem/_data.yaml @@ -5,7 +5,7 @@ title: GA SRTM 1 second DEM long_title: Geoscience Australia Shuttle Radar Topography Mission 1 second DEM version 1.0 -header_image: /_files/external-data/ga_srtm_thumbnail.jpg +header_image: /_media/external-data/ga_srtm_thumbnail.jpg product_type: null spatial_data_type: Raster time_span: diff --git a/docs/data/product/australian-geographic-reference-image/_data.yaml b/docs/data/product/australian-geographic-reference-image/_data.yaml index 6cb8fe947..e1d777209 100644 --- a/docs/data/product/australian-geographic-reference-image/_data.yaml +++ b/docs/data/product/australian-geographic-reference-image/_data.yaml @@ -4,7 +4,7 @@ short_name: Australian Geographic Reference Image full_technical_name: null -header_image: /_files/cmi/agri.jpg +header_image: /_media/cmi/agri.jpg version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/australian-national-spectral-database/_access.md b/docs/data/product/australian-national-spectral-database/_access.md index a54ba4b67..a9a5847be 100644 --- a/docs/data/product/australian-national-spectral-database/_access.md +++ b/docs/data/product/australian-national-spectral-database/_access.md @@ -58,7 +58,7 @@ Changes may be made at any time, without prior notice, to these Terms. Should ne 3) Run the application. Launch the Specchio client from your install directory or command line, it is called "specchio-client.jar". 4) Get started with the NSD: Select "Database" from the top left-hand corner of the client, then "Create a user account". See below: -![connection_tab](/_files/cmi/connection.jpg) +![connection_tab](/_media/cmi/connection.jpg) To access the service enter the following information: @@ -83,19 +83,19 @@ The NSD contains datasets or campaigns of data that can be viewed in two ways. 1) View the NSD folder structure via the data browser: -![data_browser](/_files/cmi/data_browser.jpg) +![data_browser](/_media/cmi/data_browser.jpg) -![data_browser_2](/_files/cmi/data_browser2.jpg) +![data_browser_2](/_media/cmi/data_browser2.jpg) Expand folders to the desired level, then view (show report), plot spectra, and export data. You may also manually subset data from folders by selecting multiple individual files, shown above. The report applies to the selected spectra: either at the folder or individual file level. 2) Query the NSD for specific metadata parameters: -![query_builder](/_files/cmi/query_1.jpg) +![query_builder](/_media/cmi/query_1.jpg) Select the metadata category you wish to filter by on the left-hand side. For example, to retrieve all entries for NSW, select the Location category on the left, then add "NSW" to the "State/Territory" field and hit Run Query on the right: -![query_2](/_files/cmi/query_2.jpg) +![query_2](/_media/cmi/query_2.jpg) As in the Data Browser, spectra found from the Query Builder can be viewed and exported in the same way. diff --git a/docs/data/product/australian-national-spectral-database/_data.yaml b/docs/data/product/australian-national-spectral-database/_data.yaml index 5037e158d..fdf6083ec 100644 --- a/docs/data/product/australian-national-spectral-database/_data.yaml +++ b/docs/data/product/australian-national-spectral-database/_data.yaml @@ -4,7 +4,7 @@ short_name: Australian National Spectral Database full_technical_name: null -header_image: /_files/cmi/spectral_2.jpg +header_image: /_media/cmi/spectral_2.jpg version_number: 3.3.0 is_latest_version: true diff --git a/docs/data/product/australian-national-spectral-database/_quality.md b/docs/data/product/australian-national-spectral-database/_quality.md index 63fee9241..cbea75be8 100644 --- a/docs/data/product/australian-national-spectral-database/_quality.md +++ b/docs/data/product/australian-national-spectral-database/_quality.md @@ -24,7 +24,7 @@ With the path pointing to the 1.8 JRE. Note 2: Data within the NSD are stored hierarchically so data should be exported by selecting the folder above the desired data. If you do not download data from its root folder, you will lose folder sub-structure labels. See below for an example: -:::{figure} /_files/cmi/NSD_known_issues.png +:::{figure} /_media/cmi/NSD_known_issues.png :alt: NSD browser screen grab ::: diff --git a/docs/data/product/daily-satpaths-beta/_data.yaml b/docs/data/product/daily-satpaths-beta/_data.yaml index 1357356f0..ec0dea4c6 100644 --- a/docs/data/product/daily-satpaths-beta/_data.yaml +++ b/docs/data/product/daily-satpaths-beta/_data.yaml @@ -4,7 +4,7 @@ short_name: Daily SatPaths full_technical_name: Daily Satellite Paths predictor -header_image: /_files/cmi/SatPaths_image.png +header_image: /_media/cmi/SatPaths_image.png version_number: 1.0.3-beta is_latest_version: true diff --git a/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_data.yaml b/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_data.yaml index 7d4fd7262..fa7485fb1 100644 --- a/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_data.yaml +++ b/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Burnt Area Characteristic Layers Sentinel-2 Near Real-Time full_technical_name: Geoscience Australia Burnt Area Characteristic Layers Sentinel-2 Near Real-Time -header_image: /_files/cmi/ga_s2_ba_provisional_3_interim_thumbnail.jpg +header_image: /_media/cmi/ga_s2_ba_provisional_3_interim_thumbnail.jpg version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_description.md b/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_description.md index bfc491a97..6738c2eda 100644 --- a/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_description.md +++ b/docs/data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/_description.md @@ -58,7 +58,7 @@ $$ The delta NBR layer displays values between -1 and +1, with positive value being more indicative that an area has been burnt, colour bar provided below. -![colourbar ranging from -1 to +1](/_files/dea-burnt-area/legend_dnbr.png) +![colourbar ranging from -1 to +1](/_media/dea-burnt-area/legend_dnbr.png) ### Delta Bare Soil Index ($\Delta$BSI) @@ -78,7 +78,7 @@ $$ Delta BSI is multiplied by negative 1 in order to reverse the scaling so that it can be presented the same way as the other delta indexes, which all have positive values for areas that shows characteristics of being burnt. The $\Delta$BSI layer displays values between -1 and +1, with a positive value being more indicative that an area has increased exposure of bare soil. Colour bar provided, below. -![Colourbar for dBSI product between -1 to +1](/_files/dea-burnt-area/legend_dbsi.png) +![Colourbar for dBSI product between -1 to +1](/_media/dea-burnt-area/legend_dbsi.png) ### Delta Normalised Difference Vegetation Index ($\Delta$NDVI) @@ -98,7 +98,7 @@ $$ The $\Delta$NDVI layer displays values between -1 and +1, with positive values being more indicative that green vegetation in an area has decreased, and therefore showing the characteristics of being burnt. -![Colourbar for dNDVI product between -1 to +1](/_files/dea-burnt-area/legend_dndvi.png) +![Colourbar for dNDVI product between -1 to +1](/_media/dea-burnt-area/legend_dndvi.png) ## Lineage diff --git a/docs/data/product/dea-coastlines/_access.md b/docs/data/product/dea-coastlines/_access.md index 6598e21aa..69462fc74 100644 --- a/docs/data/product/dea-coastlines/_access.md +++ b/docs/data/product/dea-coastlines/_access.md @@ -32,11 +32,11 @@ By default, the map will show hotspots of coastal change at continental scale. R More detailed rates of change points will be displayed as you zoom in. To view a time series chart of how a coastal region or area of coastline has changed over time, click on any point (press "Expand" on the pop-up for more detail): -![DEA Maps zoom example](/_files/cmi/DEACoastLines_DEAMaps_1.gif) +![DEA Maps zoom example](/_media/cmi/DEACoastLines_DEAMaps_1.gif) Zoom in further to view individual annual shorelines: -![DEA Maps coastlines example](/_files/cmi/DEACoastLines_DEAMaps_2.gif) +![DEA Maps coastlines example](/_media/cmi/DEACoastLines_DEAMaps_2.gif) **Note:** To view a DEA Coastlines layer that is not currently visible (e.g. rates of change points at full zoom), each layer can be added to the map individually from the `Sea, ocean and coast > DEA Coastlines > Supplementary data` directory. ::: diff --git a/docs/data/product/dea-coastlines/_data.yaml b/docs/data/product/dea-coastlines/_data.yaml index 00e569220..c8cb6a5ae 100644 --- a/docs/data/product/dea-coastlines/_data.yaml +++ b/docs/data/product/dea-coastlines/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Coastlines full_technical_name: Geoscience Australia Landsat Coastlines Collection 3 -header_image: /_files/cmi/thumbnail_vertical.png +header_image: /_media/cmi/thumbnail_vertical.png version_number: 2.2.0 is_latest_version: true diff --git a/docs/data/product/dea-coastlines/_description.md b/docs/data/product/dea-coastlines/_description.md index fcfc45635..81ce307e7 100644 --- a/docs/data/product/dea-coastlines/_description.md +++ b/docs/data/product/dea-coastlines/_description.md @@ -31,7 +31,7 @@ Dashed shorelines have low certainty. Learn more about this layer in the [Specifications tab](./?tab=specifications). -:::{figure} /_files/cmi/deacl_coastlines.* +:::{figure} /_media/cmi/deacl_coastlines.* :alt: DEA CoastLines coastline layer Figure 1: Annual coastlines from DEA Coastlines visualised on the [interactive DEA Coastlines web map](https://maps.dea.ga.gov.au/story/DEACoastlines) @@ -47,7 +47,7 @@ Rates of change points contains the following attribute columns that can be acce Learn more about this layer in the [Specifications tab](./?tab=specifications). -:::{figure} /_files/cmi/deacl_statistics_2.* +:::{figure} /_media/cmi/deacl_statistics_2.* :alt: DEA CoastLines rates of change statistics layer Figure 2: Rates of change points from DEA Coastlines visualised on the [interactive DEA Coastlines web map](https://maps.dea.ga.gov.au/story/DEACoastlines) @@ -59,7 +59,7 @@ Three points layers summarising coastal change within moving 1 km, 5 km and 10 k Learn more about this layer in the [Specifications tab](./?tab=specifications). -:::{figure} /_files/cmi/deacl_summary.* +:::{figure} /_media/cmi/deacl_summary.* :alt: DEA CoastLines summary layer Figure 3: Coastal change hotspots from DEA Coastlines visualised on the [interactive DEA Coastlines web map](https://maps.dea.ga.gov.au/story/DEACoastlines) diff --git a/docs/data/product/dea-coastlines/_quality.md b/docs/data/product/dea-coastlines/_quality.md index 5865f8a58..e0bf9ad7d 100644 --- a/docs/data/product/dea-coastlines/_quality.md +++ b/docs/data/product/dea-coastlines/_quality.md @@ -13,7 +13,7 @@ An extensive validation against independent coastal monitoring datasets was cond * Victorian Coastal Monitoring Program (Pucino et al., 2021) * Western Australia Department of Transport (WA DoT) Coastline Movements (Department of Transport, 2009) -:::{figure} /_files/cmi/Figure1_validation_temporal.png +:::{figure} /_media/cmi/Figure1_validation_temporal.png :alt: Validation sites Figure 4: The spatial and temporal distribution of the independent validation data that was compared against DEA Coastlines annual shorelines and rates of change. @@ -50,7 +50,7 @@ To evaluate our long-term rates of change, we identified 330 validation transect **Learn more:** For a more detailed discussion of rates of change validation results, please refer to [Bishop-Taylor et al. 2021](https://www.sciencedirect.com/science/article/pii/S0034425721004545). -:::{figure} /_files/cmi/Figure4_subpixel.png +:::{figure} /_media/cmi/Figure4_subpixel.png :alt: Validation results Figure 5: DEA Coastlines annual shorelines compared against a) aerial photogrammetry-derived annual ~0 m AMSL shorelines from the Western Australian Department of Transport Coastline Movements dataset, and b) transect-based in-situ validation data for three example locations that demonstrate sub-pixel precision shoreline extraction: Narrabeen Beach, Tugun Beach, and West Beach. DEA Coastlines transect data in panel b represent the 0 m AMSL Median Annual Shoreline Position shoreline proxy, and have been corrected for consistent local inland biases to assess the ability to capture relative coastline dynamics through time. @@ -89,7 +89,7 @@ Figure 5: DEA Coastlines annual shorelines compared against a) aerial photogramm * To compare annual shorelines to validation datasets, multiple validation observations in a year were combined into a single median measurement of coastline position. In the case where only a single validation observation was taken for a year, this single observation may not be reflective of typical shoreline conditions across the entire year period. Because of this, validation results are expected to be more reliable for validation datasets with multiple observations per year. * The current validation approach was biased towards Australia's south-western, southern and south-eastern coastlines due to the availability of historical coastal monitoring data. This bias prevented us from including more complex intertidal environments in our validation, which is likely to have inflated the accuracy of our results due to issues outlined above. -:::{figure} /_files/cmi/Figure10_intertidal.png +:::{figure} /_media/cmi/Figure10_intertidal.png :alt: Intertidal issues Figure 6: Potentially spurious shorelines in macrotidal coastal regions characterised by gently sloped tidal flat environments: a) Broad Sound and b) Shoalwater Bay, Queensland. Dashed shorelines indicate data that was flagged as affected by tidal modelling issues based on MNDWI standard deviation. In these locations, the TPXO 8 tidal model was unable to effectively sort satellite observations by tide heights, resulting in output shorelines that did not adequately suppress the influence of the tide. diff --git a/docs/data/product/dea-fractional-cover-landsat/_data.yaml b/docs/data/product/dea-fractional-cover-landsat/_data.yaml index de79abe04..a3e1a3b5e 100644 --- a/docs/data/product/dea-fractional-cover-landsat/_data.yaml +++ b/docs/data/product/dea-fractional-cover-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Fractional Cover (Landsat) full_technical_name: Geoscience Australia Landsat Fractional Cover Collection 3 -header_image: /_files/cmi/FractionalCover1.jpg +header_image: /_media/cmi/FractionalCover1.jpg version_number: "Landsat 5/7: 2.5.0, Landsat 8/9: 2.5.1" is_latest_version: true latest_version_link: null diff --git a/docs/data/product/dea-fractional-cover-percentiles-landsat/_access.md b/docs/data/product/dea-fractional-cover-percentiles-landsat/_access.md index 4bec7ac8f..3da4f8971 100644 --- a/docs/data/product/dea-fractional-cover-percentiles-landsat/_access.md +++ b/docs/data/product/dea-fractional-cover-percentiles-landsat/_access.md @@ -15,6 +15,6 @@ To view and access the data interactively: 5) Chose the Percentile you would like to display from the drop down Styles menu -![DEA Maps menu for choosing percentile](/_files/cmi/Maps-percentiles-dropdown-menu.png) +![DEA Maps menu for choosing percentile](/_media/cmi/Maps-percentiles-dropdown-menu.png) ::: diff --git a/docs/data/product/dea-fractional-cover-percentiles-landsat/_data.yaml b/docs/data/product/dea-fractional-cover-percentiles-landsat/_data.yaml index 9a83bb9f8..2a0791e52 100644 --- a/docs/data/product/dea-fractional-cover-percentiles-landsat/_data.yaml +++ b/docs/data/product/dea-fractional-cover-percentiles-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Fractional Cover Percentiles (Landsat) full_technical_name: Geoscience Australia Landsat Fractional Cover Percentiles Collection 3 -header_image: /_files/cmi/FractionalCover1_0.jpg +header_image: /_media/cmi/FractionalCover1_0.jpg version_number: 4.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_data.yaml b/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_data.yaml index d46aec6b5..a9d86fc3a 100644 --- a/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_data.yaml +++ b/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Geometric Median and Median Absolute Deviation (Landsat) full_technical_name: Geoscience Australia Landsat Geometric Median and Median Absolute Deviation Collection 3 -header_image: /_files/cmi/Geomedian_Australia_2014.jpg +header_image: /_media/cmi/Geomedian_Australia_2014.jpg version_number: 4.0.0 is_latest_version: true latest_version_link: /data/product/dea-geometric-median-and-median-absolute-deviation-landsat/ diff --git a/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_description.md b/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_description.md index 93ab7ffbe..e5fed18b9 100644 --- a/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_description.md +++ b/docs/data/product/dea-geometric-median-and-median-absolute-deviation-landsat/_description.md @@ -70,7 +70,7 @@ Median composites are a method for creating large image mosaics using an algorit The benefit of using the median composite algorithm is that it is very fast to compute. The problem, however, is that satellite imagery pixels hold information for multiple bands and simple medians lose the relationships in this information, creating unnatural results. Therefore, a geometric median algorithm is used instead, since it can handle multi-dimensional data and maintain the relationships between bands for each pixel. -:::{figure} /_files/geomedian/geomedian-alg-composite_techspecs.jpg +:::{figure} /_media/geomedian/geomedian-alg-composite_techspecs.jpg :alt: Median compositing algorithm diagram A simple median considers data from each band independently. This can be seen in Step 2 of the median compositing algorithm. (Source: [Digital Earth Africa — Introduction to the Digital Earth Africa Sandbox](https://learn.digitalearthafrica.org/courses/course-v1:digitalearthafrica+DEA101+2021/)) @@ -97,7 +97,7 @@ The geometric median is a pixel-composite mosaic of a time series of earth obser An **annual geometric median** is a high-dimensional median calculated from the reflectance values recorded over a one-year period. The annual geometric median is available for each full calendar year since 1986. -:::{figure} /_files/geomedian/geomedian-composite_techspecs.jpg +:::{figure} /_media/geomedian/geomedian-composite_techspecs.jpg :alt: geometric median algorithm diagram Each band adds a dimension to the geometric median calculation. For a three-band dataset — such as the RGB dataset shown in this figure — each point can be represented on a three-dimensional scatter plot. The geometric median is the minimised ‘sum of distances’ between all of these points. (Source: [Digital Earth Africa — Introduction to the Digital Earth Africa Sandbox](https://learn.digitalearthafrica.org/courses/course-v1:digitalearthafrica+DEA101+2021/)) @@ -134,7 +134,7 @@ Note that only Landsat 7 geometric median data is available between 2000 and 200 The primary uses of geometric median pixel composites are for change detection within baselines and for broad regional image composites (such as national and continental mosaics). -:::{figure} /_files/landsat/landsat-timeline-2024.png +:::{figure} /_media/landsat/landsat-timeline-2024.png :alt: Landsat geometric median time coverage diagram Timeline of Landsat satellite and sensor availability. @@ -179,7 +179,7 @@ The mathematical derivation of the three MADs can be found in Roberts et al. (20 ::::{dropdown} Euclidean MAD (EMAD) The most logical place to start thinking about any of the MADs is the Euclidean MAD (EMAD). This is because EMAD comes from Euclidean distance, and Euclidean distance can be explained with a physical analogy: it is how we measure straight-line distances between points. In our three-dimensional world, it may look like this: -:::{figure} /_files/geomedian/cartesian_euclidean.JPG +:::{figure} /_media/geomedian/cartesian_euclidean.JPG :alt: Euclidean distance in three dimensions Euclidean distance in three dimensions. @@ -189,7 +189,7 @@ In the case of satellite data, we are measuring the Euclidean distance between a For example, if we had three bands of data (red, green, and blue), and three timesteps of data, then we can calculate the Euclidean distances as follows: -:::{figure} /_files/geomedian/bands_euclidean.JPG +:::{figure} /_media/geomedian/bands_euclidean.JPG :alt: Euclidean distance in three dimensions over three timesteps. Euclidean distance in three dimensions over three timesteps. @@ -235,7 +235,7 @@ The spectral MAD (SMAD) is based on the median absolute deviations in the cosine In two dimensions, cosine distance can be graphically compared to Euclidean distance by the following figure: -:::{figure} /_files/geomedian/cosine_distance.JPG +:::{figure} /_media/geomedian/cosine_distance.JPG :alt: Relative relationships between Euclidean and cosine distances. Relative relationships between Euclidean and cosine distances. @@ -315,7 +315,7 @@ BCMAD takes on values from 0 to 1. ## Lineage -:::{figure} /_files/geomedian/lineage.svg +:::{figure} /_media/geomedian/lineage.svg :alt: Lineage diagram. Landsat 5, 7, 8, and 9 Surface Reflectance includes NBART and Observational Attributes products. GeoMAD stands for Geometric Median and Median Absolute Deviation. diff --git a/docs/data/product/dea-high-and-low-tide-imagery-landsat/_data.yaml b/docs/data/product/dea-high-and-low-tide-imagery-landsat/_data.yaml index c2750e50c..1c0bb46cf 100644 --- a/docs/data/product/dea-high-and-low-tide-imagery-landsat/_data.yaml +++ b/docs/data/product/dea-high-and-low-tide-imagery-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA High and Low Tide Imagery (Landsat) full_technical_name: "High Tide and Low Tide Composites 25m 2.0.0 " -header_image: /_files/cmi/HLTCv2.png +header_image: /_media/cmi/HLTCv2.png version_number: 2.0.0 is_latest_version: true diff --git a/docs/data/product/dea-hotspots/_data.yaml b/docs/data/product/dea-hotspots/_data.yaml index 859a675da..77939ca39 100644 --- a/docs/data/product/dea-hotspots/_data.yaml +++ b/docs/data/product/dea-hotspots/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Hotspots full_technical_name: Digital Earth Australia Hotspots -header_image: /_files/cmi/hotspots.jpg +header_image: /_media/cmi/hotspots.jpg version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/dea-intertidal-extents-landsat/_data.yaml b/docs/data/product/dea-intertidal-extents-landsat/_data.yaml index da61d479e..75e05973d 100644 --- a/docs/data/product/dea-intertidal-extents-landsat/_data.yaml +++ b/docs/data/product/dea-intertidal-extents-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Intertidal Extents (Landsat) full_technical_name: Intertidal Extents Model 25m -header_image: /_files/cmi/intertidal_extents.png +header_image: /_media/cmi/intertidal_extents.png version_number: 2.0.0 is_latest_version: true diff --git a/docs/data/product/dea-intertidal-extents-landsat/_description.md b/docs/data/product/dea-intertidal-extents-landsat/_description.md index 3d8d90c62..1d92c4818 100644 --- a/docs/data/product/dea-intertidal-extents-landsat/_description.md +++ b/docs/data/product/dea-intertidal-extents-landsat/_description.md @@ -46,7 +46,7 @@ The `ITEMv2_tidalmodel.shp` identifies the location and extents of the 306 polyg | **LMT** | Lowest Modelled Tide - The lowest modelled tidal height based on the OTPS model for the full period of the archive. Relative to Mean Sea Level (MSL) (m). | | **HMT** | Highest Modelled Tide - The highest modelled tidal height based on the OTPS model for the full period of the archive. Relative to Mean Sea Level (MSL) (m). | -:::{figure} /_files/cmi/item_1.* +:::{figure} /_media/cmi/item_1.* :alt: ITEM v2 polygon extents Figure 1: Polygon extents for ITEM v2. diff --git a/docs/data/product/dea-intertidal-extents-landsat/_history.md b/docs/data/product/dea-intertidal-extents-landsat/_history.md index a34c4aff2..dcb6389e4 100644 --- a/docs/data/product/dea-intertidal-extents-landsat/_history.md +++ b/docs/data/product/dea-intertidal-extents-landsat/_history.md @@ -12,7 +12,7 @@ Examples of regions in ITEM v2.0 where these significant improvements have been * **Broad Sound, QLD.** Improved tidal modelling has resulted in a smoother intertidal extent map, and a greatly improved confidence layer value for the region. * Improvements in the coverage of the DEA archive has allowed many regions unresolved in ITEM v1.0 and showing as 'no data' to be modelled successfully in ITEM 2.0. For example, **Mornington Island, QLD, Eastern sections of Fraser Island, QLD** and pensinsulas in **Bowling Green Bay National Park near Townsville, QLD.** -:::{figure} /_files/cmi/item_1.* +:::{figure} /_media/cmi/item_1.* :alt: ITEM v2 polygon extents Figure 1: Polygon extents for ITEM v2. diff --git a/docs/data/product/dea-intertidal-extents-landsat/_quality.md b/docs/data/product/dea-intertidal-extents-landsat/_quality.md index 00cce4a92..920a839c3 100644 --- a/docs/data/product/dea-intertidal-extents-landsat/_quality.md +++ b/docs/data/product/dea-intertidal-extents-landsat/_quality.md @@ -2,7 +2,7 @@ Due the sun-synchronous nature of the various Landsat sensor observations; it is unlikely that the full physical extents of the tidal range in any cell will be observed. Hence, terminology has been adopted for the product to reflect the highest modelled tide observed in a given cell (HOT) and the lowest modelled tide observed (LOT) (Figure 1). These measures are relative to Mean Sea Level, and have no consistent relationship to Lowest (LAT) and Highest Astronomical Tide (HAT). -:::{figure} /_files/cmi/item_2.png +:::{figure} /_media/cmi/item_2.png :alt: tide range Figure 1: Tidal range showing the HOT and LOT. diff --git a/docs/data/product/dea-intertidal/_access.md b/docs/data/product/dea-intertidal/_access.md index 1e079c5bc..0eccc385e 100644 --- a/docs/data/product/dea-intertidal/_access.md +++ b/docs/data/product/dea-intertidal/_access.md @@ -42,7 +42,7 @@ To download the data from the ELVIS (Elevation Information System) platform, fol 1. Enter your industry and email address, then click **Order dataset**. 1. Your data will be emailed to you as a zipped folder containing DEA Intertidal Elevation and Elevation Uncertainty GeoTIFF rasters. -:::{figure} /_files/dea-intertidal/DEAIntertidal_ELVIS_access.* +:::{figure} /_media/dea-intertidal/DEAIntertidal_ELVIS_access.* :alt: Accessing DEA Intertidal on ELVIS Accessing DEA Intertidal Elevation data on ELVIS diff --git a/docs/data/product/dea-intertidal/_data.yaml b/docs/data/product/dea-intertidal/_data.yaml index cb7723972..82dd3d2c9 100644 --- a/docs/data/product/dea-intertidal/_data.yaml +++ b/docs/data/product/dea-intertidal/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Intertidal full_technical_name: Geoscience Australia Sentinel-2 Landsat Intertidal Calendar Year Collection 3  -header_image: /_files/dea-intertidal/DEAIntertidal_prettypic_Elevation_ShoalPointQLD_XS_Size.png +header_image: /_media/dea-intertidal/DEAIntertidal_prettypic_Elevation_ShoalPointQLD_XS_Size.png version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/dea-intertidal/_description.md b/docs/data/product/dea-intertidal/_description.md index 3c6d3d9c8..393375a01 100644 --- a/docs/data/product/dea-intertidal/_description.md +++ b/docs/data/product/dea-intertidal/_description.md @@ -83,7 +83,7 @@ ga_s2ls_intertidal_cyear_3_x082y139_2022--P1Y_final_elevation.tif DEA Intertidal Elevation (Figure 1) provides elevation in metre units relative to modelled Mean Sea Level for each pixel of the satellite-observed exposed intertidal zone across the Australian coastline. The elevation model is generated from DEA Landsat and Sentinel-2 surface reflectance data from each 3-year composite period, utilising a pixel-based approach based on [Ensemble Tidal Modelling](#ensemble-tidal-modelling). For every pixel, the time series of surface reflectance data is converted to the Normalised Difference Water Index (NDWI) and each observation tagged with the tidal height modelled at the time of acquisition by the satellite. A rolling median is applied from low to high tide to reduce noise (such as white water, sunglint, and non-tidal water level variability), then analysed to identify the tide height at which the pixel transitions from dry to wet. This tide height represents the elevation of the pixel. -:::{figure} /_files/dea-intertidal/DEAIntertidal_layer_elevation.* +:::{figure} /_media/dea-intertidal/DEAIntertidal_layer_elevation.* :alt: DEA Intertidal Elevation layer Figure 1 — DEA Intertidal Elevation, with low elevation values shown in dark colours and high elevation shown in light colours. @@ -104,7 +104,7 @@ Figure 1 — DEA Intertidal Elevation, with low elevation values shown in da DEA Intertidal Elevation Uncertainty (Figure 2) provides a measure of the quality of each modelled elevation value in metre units. Uncertainty is calculated by assessing how cleanly the modelled elevation separates satellite observations into dry and wet observations. This is achieved by identifying satellite observations that were misclassified by the modelled elevation (for instance, pixels that were observed as wet at tide heights lower than the modelled elevation, or alternately, observed as dry at higher tide heights). The spread of tide heights from these misclassified observations is summarised using a robust Median Absolute Deviation (MAD) statistic, and reported as $0.5 \times MAD$ to represent one-sided uncertainty bounds (i.e. ± uncertainty on either side of the pixel's elevation). Common causes of high elevation uncertainty can be poor tidal model performance, rapidly changing intertidal morphology, or noisy underlying satellite data. -:::{figure} /_files/dea-intertidal/DEAIntertidal_layer_elevation_uncertainty.* +:::{figure} /_media/dea-intertidal/DEAIntertidal_layer_elevation_uncertainty.* :alt: DEA Intertidal Elevation Uncertainty layer Figure 2 — DEA Intertidal Elevation Uncertainty, with high uncertainty shown in light colours. @@ -127,7 +127,7 @@ Figure 2 — DEA Intertidal Elevation Uncertainty, with high uncertainty sho DEA Intertidal Exposure (Figure 3) models the percentage of time that any intertidal pixel of known elevation is exposed from tidal inundation. Exposure is calculated by comparing the pixel elevation back against a high temporal resolution model of tide heights for that location, based on the [Ensemble Tidal Modelling](#ensemble-tidal-modelling) approach. Exposure percentage is calculated as the fraction of exposed observations relative to the total number of observations generated in the high temporal resolution tidal model for the 3-year product epoch. -:::{figure} /_files/dea-intertidal/DEAIntertidal_layer_exposure.* +:::{figure} /_media/dea-intertidal/DEAIntertidal_layer_exposure.* :alt: DEA Intertidal Exposure layer Figure 3 — DEA Intertidal Exposure, with low exposure values (i.e. rarely exposed pixels) shown in dark colours. @@ -186,7 +186,7 @@ The low tide offset dataset quantifies the proportion of the lowest tides not The high tide offset dataset quantifies the proportion of the highest tides not observed at any time during the analysis epoch by satellites at each pixel (as a percentage of the astronomical tide range). It is calculated by measuring the offset between the highest astronomical tide (HAT) and the highest satellite-observed tide (HOT; see Figure 4c). A high value indicates that DEA Intertidal datasets may not map the highest regions of the intertidal zone. -:::{figure} /_files/dea-intertidal/tidalattributes.* +:::{figure} /_media/dea-intertidal/tidalattributes.* :alt: Tidal Attributes Description Figure Figure 4 — Illustration of the concept of observed tide heights (dots corresponding to satellite acquisition time) compared to the full modelled tidal range (blue lines). Descriptions of Spread (a), Lowtide offset (b), and Hightide offset (c) are detailed in the text. @@ -303,7 +303,7 @@ The tidal models listed below were implemented within the DEA environment using The ensemble process utilises ancillary data (in this case, the correlation of the NDWI values to each individual tidal model output) to weight and selects the top 3 tidal models for a given location. A single ensemble tidal output from these 3 optimal models is then generated for use in all downstream product workflows.   -:::{figure} /_files/dea-intertidal/ensembletides.* +:::{figure} /_media/dea-intertidal/ensembletides.* :alt: Ensemble tide validation Figure ::: diff --git a/docs/data/product/dea-intertidal/_quality.md b/docs/data/product/dea-intertidal/_quality.md index 56b31b755..a21debf0a 100644 --- a/docs/data/product/dea-intertidal/_quality.md +++ b/docs/data/product/dea-intertidal/_quality.md @@ -24,7 +24,7 @@ To evaluate the accuracy of DEA Intertidal Elevation, we calculated RMSE, MAE, c | Slope | 0.44 | 0.80 | **1.03** | ::: -:::{figure} /_files/dea-intertidal/tiderangevalidation.* +:::{figure} /_media/dea-intertidal/tiderangevalidation.* :alt: Validation at different tidal ranges Figure 6 — DEA Intertidal Elevation validation heatmaps comparing performance across microtidal, mesotidal and macrotidal coastlines. diff --git a/docs/data/product/dea-land-cover-landsat/_data.yaml b/docs/data/product/dea-land-cover-landsat/_data.yaml index 9c2e26004..f8b6a7663 100644 --- a/docs/data/product/dea-land-cover-landsat/_data.yaml +++ b/docs/data/product/dea-land-cover-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Land Cover (Landsat) full_technical_name: "Geoscience Australia Landsat Land Cover 25m " -header_image: /_files/cmi/DEA_Land_Cover_1_0_0_Lvl4_2015.jpg +header_image: /_media/cmi/DEA_Land_Cover_1_0_0_Lvl4_2015.jpg version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/dea-land-cover-landsat/_description.md b/docs/data/product/dea-land-cover-landsat/_description.md index f50d77f02..001917e39 100644 --- a/docs/data/product/dea-land-cover-landsat/_description.md +++ b/docs/data/product/dea-land-cover-landsat/_description.md @@ -377,17 +377,17 @@ The bare gradation describes the percentage of bare surface in areas which conta The FAO LCCS taxonomy (Figure 1) is hierarchical and consists of a dichotomous phase (Level 1 to 3) and a modular phase (referred to as Level 4). In Level 1, vegetated and non-vegetated areas are first separated. These are then divided into terrestrial or aquatic categories to form Level 2. In the vegetated terrestrial category, cultivated and natural (including semi-natural) areas are differentiated. The non-vegetated category is further divided into artificial surfaces, and natural surfaces incorporating low vegetation cover and bare areas. Including the non-vegetated aquatic class (from Level 2), this results in the creation of six base land cover categories. -![Diagram showing the portion of the LCCS taxonomy which is implemented in DEA Land Cover v1.0.0](/_files/cmi/cut_back_0.PNG) +![Diagram showing the portion of the LCCS taxonomy which is implemented in DEA Land Cover v1.0.0](/_media/cmi/cut_back_0.PNG) *Figure 1 - Diagrammatic representation of the implementation of the FAO LCCS (Version 2) classification within the DEA Land Cover product version 1.0.* At Level 4, vegetated areas are further classified using information that differentiates lifeform (woody and herbaceous) and quantifies vegetation cover percent and water seasonality (for Natural Aquatic Vegetation). Natural Surface areas have information added (bare gradation) which describes the level of remaining vegetation present (sparse, very sparse or not detectable). Non-vegetated aquatic areas (Water) are further described on the basis of their persistence (hydroperiod) over a calendar year. The FAO LCCS differentiates water in different physical states (liquid or frozen; ice or snow), however only liquid water is included in the current release. -![Diagram showing the data products which go into producing the level 3 classification.](/_files/cmi/level3-dataflow.PNG) +![Diagram showing the data products which go into producing the level 3 classification.](/_media/cmi/level3-dataflow.PNG) *Figure 2 - Input data products used to produce Level 3 classification* -![Diagram showing input data products used to produce the Level 4 classification](/_files/cmi/level4-dataflow.PNG) +![Diagram showing input data products used to produce the Level 4 classification](/_media/cmi/level4-dataflow.PNG) *Figure 3 - Input data products used to produce Level 4 classification* diff --git a/docs/data/product/dea-land-cover-landsat/_quality.md b/docs/data/product/dea-land-cover-landsat/_quality.md index 34c85048a..a1640b32f 100644 --- a/docs/data/product/dea-land-cover-landsat/_quality.md +++ b/docs/data/product/dea-land-cover-landsat/_quality.md @@ -4,13 +4,13 @@ The product was validated using 6000 points spatially distributed over Australia Table 2 contains the overall accuracy for all classes. The term ‘support’ refers to the number of validation points used in the calculation of that accuracy value. -![Overall accuracy of DEA Land Cover is 80%. 2010 accuracy is 82%, 2015 accuracy is 78%.](/_files/cmi/overall-accuracy_0.PNG) +![Overall accuracy of DEA Land Cover is 80%. 2010 accuracy is 82%, 2015 accuracy is 78%.](/_media/cmi/overall-accuracy_0.PNG) Table 3 contains per-class accuracy information. “Precision” refers to the ability of a classification model to return only relevant instances. “Recall” refers to the ability to identify all relevant instances. The “F1 score” is a combination of precision and recall and an overall measure of accuracy. Classes such as artificial surfaces, natural aquatic vegetation and water had high accuracies. Classifying cultivated terrestrial vegetation and bare surfaces was challenging and accuracies were the lowest of the six classes presented here. -![Table showing accuracy per class, including precision, recall, F1 score and support values per class. ](/_files/cmi/per-class-accuracy.PNG) +![Table showing accuracy per class, including precision, recall, F1 score and support values per class. ](/_media/cmi/per-class-accuracy.PNG) -![table showing the agreement between assessors.](/_files/cmi/inter-assessor-agreement.PNG) +![table showing the agreement between assessors.](/_media/cmi/inter-assessor-agreement.PNG) ### Limitations of the Implementation Method @@ -81,9 +81,9 @@ An additional limitation of the Landsat series is the availability of data due t The result of the availability of the satellites is that the most consistent data availability occurs when two satellites are in operation (most of the 2003 to present period). The least data availability is in 2011 – 2012 when only Landsat 7 was available with data containing the SLC-Off striping issue. The overall data availability for the Landsat satellites is shown in Table 5. The datasets used in this analysis are shown in Table 6. -![table detailing availability of different Landsat satellites since 1986 and any known issues.](/_files/cmi/eo-limitations-table.PNG) +![table detailing availability of different Landsat satellites since 1986 and any known issues.](/_media/cmi/eo-limitations-table.PNG) -![datasets within DEA used to provide essential descriptor information](/_files/cmi/DEA-datasets-used.PNG) +![datasets within DEA used to provide essential descriptor information](/_media/cmi/DEA-datasets-used.PNG) % ## Quality assurance diff --git a/docs/data/product/dea-mangroves/_data.yaml b/docs/data/product/dea-mangroves/_data.yaml index 95373053f..ceaeaba4c 100644 --- a/docs/data/product/dea-mangroves/_data.yaml +++ b/docs/data/product/dea-mangroves/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Mangroves (Landsat) full_technical_name: Geoscience Australia Mangrove Canopy Cover Collection 3 -header_image: /_files/cmi/DEA-mangroves.jpg +header_image: /_media/cmi/DEA-mangroves.jpg version_number: 4.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-landsat-5-tm/_data.yaml b/docs/data/product/dea-surface-reflectance-landsat-5-tm/_data.yaml index cd0b934b3..2622ec3a5 100644 --- a/docs/data/product/dea-surface-reflectance-landsat-5-tm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-landsat-5-tm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance (Landsat 5 TM) full_technical_name: Geoscience Australia Landsat 5 TM Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-landsat-7-etm/_data.yaml b/docs/data/product/dea-surface-reflectance-landsat-7-etm/_data.yaml index 8f1a351b7..4dd041eb9 100644 --- a/docs/data/product/dea-surface-reflectance-landsat-7-etm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-landsat-7-etm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance (Landsat 7 ETM+) full_technical_name: Geoscience Australia Landsat 7 ETM+ Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_0.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_0.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-landsat-8-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-landsat-8-oli-tirs/_data.yaml index 7507e6581..94c6a64f4 100644 --- a/docs/data/product/dea-surface-reflectance-landsat-8-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-landsat-8-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance (Landsat 8 OLI-TIRS) full_technical_name: Geoscience Australia Landsat 8 OLI-TIRS Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-landsat-9-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-landsat-9-oli-tirs/_data.yaml index 243b8f3a7..2b164cc42 100644 --- a/docs/data/product/dea-surface-reflectance-landsat-9-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-landsat-9-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance (Landsat 9) full_technical_name: Geoscience Australia Landsat 9 OLI-TIRS Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbar-landsat-5-tm/_data.yaml b/docs/data/product/dea-surface-reflectance-nbar-landsat-5-tm/_data.yaml index dfb0630c7..fa3aca9a1 100644 --- a/docs/data/product/dea-surface-reflectance-nbar-landsat-5-tm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbar-landsat-5-tm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBAR (Landsat 5 TM) full_technical_name: Geoscience Australia Landsat 5 TM NBAR Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbar-landsat-7-etm/_data.yaml b/docs/data/product/dea-surface-reflectance-nbar-landsat-7-etm/_data.yaml index 338c324ab..510dead0c 100644 --- a/docs/data/product/dea-surface-reflectance-nbar-landsat-7-etm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbar-landsat-7-etm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBAR (Landsat 7 ETM+) full_technical_name: Geoscience Australia Landsat 7 ETM+ NBAR Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_0.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_0.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbar-landsat-8-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-nbar-landsat-8-oli-tirs/_data.yaml index 0894a0c70..035096865 100644 --- a/docs/data/product/dea-surface-reflectance-nbar-landsat-8-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbar-landsat-8-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBAR (Landsat 8 OLI-TIRS) full_technical_name: Geoscience Australia Landsat 8 OLI-TIRS NBAR Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbar-landsat-9-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-nbar-landsat-9-oli-tirs/_data.yaml index b7e124fa8..f21a1551b 100644 --- a/docs/data/product/dea-surface-reflectance-nbar-landsat-9-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbar-landsat-9-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBAR (Landsat 9) full_technical_name: Geoscience Australia Landsat 9 OLI-TIRS NBAR Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-landsat-5-tm/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-landsat-5-tm/_data.yaml index 46b459b11..c0a79b330 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-landsat-5-tm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-landsat-5-tm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Landsat 5 TM) full_technical_name: Geoscience Australia Landsat 5 TM NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-landsat-7-etm/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-landsat-7-etm/_data.yaml index fae619d5f..6ca15a02a 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-landsat-7-etm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-landsat-7-etm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Landsat 7 ETM+) full_technical_name: Geoscience Australia Landsat 7 ETM+ NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_0.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_0.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-landsat-8-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-landsat-8-oli-tirs/_data.yaml index 3fbb8e520..f246c9eb5 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-landsat-8-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-landsat-8-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Landsat 8 OLI-TIRS) full_technical_name: Geoscience Australia Landsat 8 OLI-TIRS NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-landsat-9-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-landsat-9-oli-tirs/_data.yaml index 7790556d9..6516d79da 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-landsat-9-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-landsat-9-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Landsat 9) full_technical_name: Geoscience Australia Landsat 9 OLI-TIRS NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_data.yaml index 3e8002468..5e223422e 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Sentinel-2A MSI) full_technical_name: Geoscience Australia Sentinel-2A MSI NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_history.md b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_history.md index 79b817334..6900adad1 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_history.md +++ b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2a-msi/_history.md @@ -10,7 +10,7 @@ Reprocessing for the [Sentinel-2 contiguity fix](https://communication.ga.gov.au ```{eval-rst} -:download:`Download the list of affected scenes (CSV) ` +:download:`Download the list of affected scenes (CSV) ` ``` diff --git a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_data.yaml index 9b936cd68..80dde81bb 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance NBART (Sentinel-2B MSI) full_technical_name: Geoscience Australia Sentinel-2B MSI NBART Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_history.md b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_history.md index 8ae8e1510..050cd9d04 100644 --- a/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_history.md +++ b/docs/data/product/dea-surface-reflectance-nbart-sentinel-2b-msi/_history.md @@ -10,7 +10,7 @@ Reprocessing for the [Sentinel-2 contiguity fix](https://communication.ga.gov.au ```{eval-rst} -:download:`Download the list of affected scenes (CSV) ` +:download:`Download the list of affected scenes (CSV) ` ``` diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_data.yaml index 0648883e3..7eec9d1d1 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Landsat 5 TM) full_technical_name: Geoscience Australia Landsat 5 TM Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_description.md b/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_description.md index 195ae3d06..9531ed7a6 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-5-tm/_description.md @@ -66,7 +66,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area containing high topographic relief, terrain shadow, and high incident angles. Applications, such as water classification, can mis-classify dark regions as water due to the effect of high incident angles in regions of high topographic relief. -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 1.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 1.png :alt: NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART ::: @@ -99,19 +99,19 @@ These images depict an area containing high topographic relief, terrain shadow, * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 2.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 2.png :alt: Zenith angles ::: *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 3.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 3.png :alt: Zenith and azimuth angles ::: *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 4.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 4.png :alt: Incident (i) and exiting (e) angles ::: @@ -141,7 +141,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 5.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 5.png :alt: Different types of terrain-shaded pixels ::: @@ -158,7 +158,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water -:::{image} /_files/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 6.png +:::{image} /_media/cmi/Surface\ Reflectance\ OA\ 3\ -\ figure\ 6.png :alt: False colour composite and the resulting Fmask classification ::: diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_data.yaml index 10d2ec580..97b54021f 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Landsat 7 ETM+) full_technical_name: Geoscience Australia Landsat 7 ETM+ Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_0.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_0.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_description.md b/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_description.md index 4781d21f6..53066e7ea 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-7-etm/_description.md @@ -65,7 +65,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area containing high topographic relief, terrain shadow, and high incident angles. Applications, such as water classification, can mis-classify dark regions as water due to the effect of high incident angles in regions of high topographic relief. -![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_files/cmi/Surface_Reflectance_OA_3_-_figure_1.png) +![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_media/cmi/Surface_Reflectance_OA_3_-_figure_1.png) *Figure 1. (A) Surface Reflectance (Landsat 5 TM NBAR) image; (B) terrain shadow mask; (C) high incident angle mask (>65); (D) NBAR+ mask overlay; (E) equivalent Surface Reflectance (Landsat 5 TM NBART) image.* @@ -96,15 +96,15 @@ These images depict an area containing high topographic relief, terrain shadow, * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -![Zenith angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_2.png) +![Zenith angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_2.png) *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -![Zenith and azimuth angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_3.png) +![Zenith and azimuth angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_3.png) *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -![Incident (i) and exiting (e) angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_4.png) +![Incident (i) and exiting (e) angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_4.png) *Figure 4. Incident (i) and exiting (e) angles for a level and inclined surface. Image modified from Dymond and Shepherd (1999).* @@ -132,7 +132,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded -![Different types of terrain-shaded pixels](/_files/cmi/Surface_Reflectance_OA_3_-_figure_5.png) +![Different types of terrain-shaded pixels](/_media/cmi/Surface_Reflectance_OA_3_-_figure_5.png) *Figure 5. Different types of terrain-shaded pixels. C = point of interest; D = point located along the direction of the sun; 90-θS = solar zenith; Z0 = elevation at location C; Zd = elevation at location D. Image sourced from Jupp et al. (2012).* @@ -147,7 +147,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water -![False colour composite and the resulting Fmask classification](/_files/cmi/Surface_Reflectance_OA_3_-_figure_6.png) +![False colour composite and the resulting Fmask classification](/_media/cmi/Surface_Reflectance_OA_3_-_figure_6.png) *Figure 6. (A) False colour composite; (B) the resulting Fmask classification.* diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_data.yaml index 904821f7d..8d07ffc4c 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Landsat 8 OLI-TIRS) full_technical_name: Geoscience Australia Landsat 8 OLI-TIRS Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_description.md b/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_description.md index 1d421ca3a..01be57630 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/_description.md @@ -65,7 +65,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area containing high topographic relief, terrain shadow, and high incident angles. Applications, such as water classification, can mis-classify dark regions as water due to the effect of high incident angles in regions of high topographic relief. -![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_files/cmi/Surface_Reflectance_OA_3_-_figure_1.png) +![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_media/cmi/Surface_Reflectance_OA_3_-_figure_1.png) *Figure 1. (A) Surface Reflectance (Landsat 5 TM NBAR) image; (B) terrain shadow mask; (C) high incident angle mask (>65); (D) NBAR+ mask overlay; (E) equivalent Surface Reflectance (Landsat 5 TM NBART) image.* @@ -96,15 +96,15 @@ These images depict an area containing high topographic relief, terrain shadow, * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -![Zenith angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_2.png) +![Zenith angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_2.png) *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -![Zenith and azimuth angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_3.png) +![Zenith and azimuth angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_3.png) *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -![Incident (i) and exiting (e) angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_4.png) +![Incident (i) and exiting (e) angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_4.png) *Figure 4. Incident (i) and exiting (e) angles for a level and inclined surface. Image modified from Dymond and Shepherd (1999).* @@ -132,7 +132,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded -![Different types of terrain-shaded pixels](/_files/cmi/Surface_Reflectance_OA_3_-_figure_5.png) +![Different types of terrain-shaded pixels](/_media/cmi/Surface_Reflectance_OA_3_-_figure_5.png) *Figure 5. Different types of terrain-shaded pixels. C = point of interest; D = point located along the direction of the sun; 90-θS = solar zenith; Z0 = elevation at location C; Zd = elevation at location D. Image sourced from Jupp et al. (2012).* @@ -147,7 +147,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water -![False colour composite and the resulting Fmask classification](/_files/cmi/Surface_Reflectance_OA_3_-_figure_6.png) +![False colour composite and the resulting Fmask classification](/_media/cmi/Surface_Reflectance_OA_3_-_figure_6.png) *Figure 6. (A) False colour composite; (B) the resulting Fmask classification.* diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_data.yaml index 9f6ed659f..23486f6fd 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Landsat 9) full_technical_name: Geoscience Australia Landsat 9 OLI-TIRS Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_description.md b/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_description.md index 88e842156..8b76c8c93 100644 --- a/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-landsat-9-oli-tirs/_description.md @@ -66,7 +66,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area containing high topographic relief, terrain shadow, and high incident angles. Applications, such as water classification, can mis-classify dark regions as water due to the effect of high incident angles in regions of high topographic relief. -![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_files/cmi/Surface_Reflectance_OA_3_-_figure_1.png) +![NBAR, terrain shadow, high incident angle, NBAR+ mask overlay, NBART](/_media/cmi/Surface_Reflectance_OA_3_-_figure_1.png) *Figure 1. (A) Surface Reflectance (Landsat 5 TM NBAR) image; (B) terrain shadow mask; (C) high incident angle mask (>65); (D) NBAR+ mask overlay; (E) equivalent Surface Reflectance (Landsat 5 TM NBART) image.* @@ -97,15 +97,15 @@ These images depict an area containing high topographic relief, terrain shadow, * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -![Zenith angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_2.png) +![Zenith angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_2.png) *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -![Zenith and azimuth angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_3.png) +![Zenith and azimuth angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_3.png) *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -![Incident (i) and exiting (e) angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_4.png) +![Incident (i) and exiting (e) angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_4.png) *Figure 4. Incident (i) and exiting (e) angles for a level and inclined surface. Image modified from Dymond and Shepherd (1999).* @@ -133,7 +133,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded. -![Different types of terrain-shaded pixels](/_files/cmi/Surface_Reflectance_OA_3_-_figure_5.png) +![Different types of terrain-shaded pixels](/_media/cmi/Surface_Reflectance_OA_3_-_figure_5.png) *Figure 5. Different types of terrain-shaded pixels. C = point of interest; D = point located along the direction of the sun; 90-θS = solar zenith; Z0 = elevation at location C; Zd = elevation at location D. Image sourced from Jupp et al. (2012).* @@ -148,7 +148,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water. -![False colour composite and the resulting Fmask classification](/_files/cmi/Surface_Reflectance_OA_3_-_figure_6.png) +![False colour composite and the resulting Fmask classification](/_media/cmi/Surface_Reflectance_OA_3_-_figure_6.png) *Figure 6. (A) False colour composite; (B) the resulting Fmask classification.* diff --git a/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_data.yaml index 4a55e7a1b..d005369bf 100644 --- a/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Sentinel-2A MSI) full_technical_name: Geoscience Australia Sentinel-2A Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_description.md b/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_description.md index d004382a2..329e283cb 100644 --- a/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-sentinel-2a-msi/_description.md @@ -69,7 +69,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area partially occluded by cloud with visible shadow. Applications, such as land cover, can mis-classify regions if cloud or shadow is misinterpreted as ground observation. -![Surface Reflectance (Sentinel-2A NBART)](/_files/cmi/NBART.png)![FMask](/_files/cmi/Fmask.png)![s2cloudless mask](/_files/cmi/s2cloudless_mask.png)![s2cloudless probability](/_files/cmi/s2cloudless_prob.png) +![Surface Reflectance (Sentinel-2A NBART)](/_media/cmi/NBART.png)![FMask](/_media/cmi/Fmask.png)![s2cloudless mask](/_media/cmi/s2cloudless_mask.png)![s2cloudless probability](/_media/cmi/s2cloudless_prob.png) *Figure 1. (A) Surface Reflectance (Sentinel-2A) image; (B) Fmask (purple: cloud, yellow: cloud shadow); (C)* *s2cloudless mask (white: cloud, black: clear); (D) s2cloudless probability.* @@ -100,15 +100,15 @@ These images depict an area partially occluded by cloud with visible shadow. App * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -![Zenith angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_2.png) +![Zenith angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_2.png) *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -![Zenith and azimuth angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_3.png) +![Zenith and azimuth angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_3.png) *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -![Incident (i) and exiting (e) angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_4.png) +![Incident (i) and exiting (e) angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_4.png) *Figure 4. Incident (i) and exiting (e) angles for a level and inclined surface. Image modified from Dymond and Shepherd (1999).* @@ -145,7 +145,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded. -![Different types of terrain-shaded pixels](/_files/cmi/Surface_Reflectance_OA_3_-_figure_5.png) +![Different types of terrain-shaded pixels](/_media/cmi/Surface_Reflectance_OA_3_-_figure_5.png) *Figure 5. Different types of terrain-shaded pixels. C = point of interest; D = point located along the direction of the sun; 90-θS = solar zenith; Z0 = elevation at location C; Zd = elevation at location D. Image sourced from Li et al. (2012).* @@ -160,7 +160,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water. -![False colour composite and the resulting Fmask classification](/_files/cmi/Surface_Reflectance_OA_3_-_figure_6.png) +![False colour composite and the resulting Fmask classification](/_media/cmi/Surface_Reflectance_OA_3_-_figure_6.png) *Figure 6. (A) False colour composite; (B) the resulting Fmask classification.* diff --git a/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_data.yaml index a0497882c..cfb3a99f3 100644 --- a/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance OA (Sentinel-2B MSI) full_technical_name: Geoscience Australia Sentinel-2B Observation Attributes Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_description.md b/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_description.md index cf03c8599..c01c2ad42 100644 --- a/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_description.md +++ b/docs/data/product/dea-surface-reflectance-oa-sentinel-2b-msi/_description.md @@ -66,7 +66,7 @@ Pixel-level information on satellite and solar geometries is useful if you wish These images depict an area partially occluded by cloud with visible shadow. Applications, such as land cover, can mis-classify regions if cloud or shadow is misinterpreted as ground observation. -![Surface Reflectance (Sentinel-2A NBART)](/_files/cmi/NBART.png)![FMask](/_files/cmi/Fmask.png)![s2cloudless mask](/_files/cmi/s2cloudless_mask.png)![s2cloudless probability](/_files/cmi/s2cloudless_prob.png) +![Surface Reflectance (Sentinel-2A NBART)](/_media/cmi/NBART.png)![FMask](/_media/cmi/Fmask.png)![s2cloudless mask](/_media/cmi/s2cloudless_mask.png)![s2cloudless probability](/_media/cmi/s2cloudless_prob.png) *Figure 1. (A) Surface Reflectance (Sentinel-2B) image; (B) Fmask (purple: cloud, yellow: cloud shadow); (C)* *s2cloudless mask (white: cloud, black: clear); (D) s2cloudless probability.* @@ -97,15 +97,15 @@ These images depict an area partially occluded by cloud with visible shadow. App * **Timedelta (seconds)** The time from satellite apogee (the point of orbit at which the satellite is furthest from the Earth). -![Zenith angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_2.png) +![Zenith angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_2.png) *Figure 2. Zenith angles. Image modified from Support to Aviation Control Service (2011).* -![Zenith and azimuth angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_3.png) +![Zenith and azimuth angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_3.png) *Figure 3. Zenith and azimuth angles. θs = solar zenith; θν = satellite view; Φs = solar azimuth (green); Φν = satellite azimuth (blue); Φ = relative azimuth (red). Image modified from Hudson et al. (2006).* -![Incident (i) and exiting (e) angles](/_files/cmi/Surface_Reflectance_OA_3_-_figure_4.png) +![Incident (i) and exiting (e) angles](/_media/cmi/Surface_Reflectance_OA_3_-_figure_4.png) *Figure 4. Incident (i) and exiting (e) angles for a level and inclined surface. Image modified from Dymond and Shepherd (1999).* @@ -142,7 +142,7 @@ The terrain-shaded pixels product can be utilised as a strict mask and exclude p * 0 = shaded * 1 = not shaded. -![Different types of terrain-shaded pixels](/_files/cmi/Surface_Reflectance_OA_3_-_figure_5.png) +![Different types of terrain-shaded pixels](/_media/cmi/Surface_Reflectance_OA_3_-_figure_5.png) *Figure 5. Different types of terrain-shaded pixels. C = point of interest; D = point located along the direction of the sun; 90-θS = solar zenith; Z0 = elevation at location C; Zd = elevation at location D. Image sourced from Li et al. (2012).* @@ -157,7 +157,7 @@ The following images represent the surface reflectance image and derived Fmask c * Cyan = snow * Dark blue = water. -![False colour composite and the resulting Fmask classification](/_files/cmi/Surface_Reflectance_OA_3_-_figure_6.png) +![False colour composite and the resulting Fmask classification](/_media/cmi/Surface_Reflectance_OA_3_-_figure_6.png) *Figure 6. (A) False colour composite; (B) the resulting Fmask classification.* diff --git a/docs/data/product/dea-surface-reflectance-sentinel-2a-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-sentinel-2a-msi/_data.yaml index 5afad66ff..7dfa84c8d 100644 --- a/docs/data/product/dea-surface-reflectance-sentinel-2a-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-sentinel-2a-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: " DEA Surface Reflectance (Sentinel-2A MSI)" full_technical_name: Geoscience Australia Sentinel-2A MSI Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-surface-reflectance-sentinel-2b-msi/_data.yaml b/docs/data/product/dea-surface-reflectance-sentinel-2b-msi/_data.yaml index d82ea9648..f20a49b4e 100644 --- a/docs/data/product/dea-surface-reflectance-sentinel-2b-msi/_data.yaml +++ b/docs/data/product/dea-surface-reflectance-sentinel-2b-msi/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Surface Reflectance (Sentinel-2B MSI) full_technical_name: Geoscience Australia Sentinel-2B MSI Analysis Ready Data Collection 3 -header_image: /_files/cmi/surface_reflectance_2_NBARTa_1.png +header_image: /_media/cmi/surface_reflectance_2_NBARTa_1.png version_number: 3.2.1 is_latest_version: true diff --git a/docs/data/product/dea-tasseled-cap-percentiles-landsat/_data.yaml b/docs/data/product/dea-tasseled-cap-percentiles-landsat/_data.yaml index 52ed478de..b2eb72130 100644 --- a/docs/data/product/dea-tasseled-cap-percentiles-landsat/_data.yaml +++ b/docs/data/product/dea-tasseled-cap-percentiles-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Tasseled Cap Percentiles (Landsat) full_technical_name: Geoscience Australia Tasseled Cap Percentiles Collection 3 -header_image: /_files/cmi/TCWpercentiles.png +header_image: /_media/cmi/TCWpercentiles.png version_number: 2.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/product/dea-water-observations-landsat/_data.yaml b/docs/data/product/dea-water-observations-landsat/_data.yaml index afc6cd234..c2bc65712 100644 --- a/docs/data/product/dea-water-observations-landsat/_data.yaml +++ b/docs/data/product/dea-water-observations-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Water Observations (Landsat) full_technical_name: Geoscience Australia Landsat Water Observations Collection 3 -header_image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png +header_image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png version_number: 2.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/product/dea-water-observations-sentinel-2-nrt/_data.yaml b/docs/data/product/dea-water-observations-sentinel-2-nrt/_data.yaml index 1231f48a1..13a05ad6a 100644 --- a/docs/data/product/dea-water-observations-sentinel-2-nrt/_data.yaml +++ b/docs/data/product/dea-water-observations-sentinel-2-nrt/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Water Observations (Sentinel-2 NRT) full_technical_name: Geoscience Australia Sentinel-2 Near Real Time Water Observations Collection 3 -header_image: /_files/cmi/S2_WO_Provisional_Gulf_20230320_0.png +header_image: /_media/cmi/S2_WO_Provisional_Gulf_20230320_0.png version_number: 1.1.6 is_latest_version: true diff --git a/docs/data/product/dea-water-observations-statistics-landsat/_data.yaml b/docs/data/product/dea-water-observations-statistics-landsat/_data.yaml index b8f1e0d70..3d145eb76 100644 --- a/docs/data/product/dea-water-observations-statistics-landsat/_data.yaml +++ b/docs/data/product/dea-water-observations-statistics-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Water Observations Statistics (Landsat) full_technical_name: Geoscience Australia Landsat Water Observation Statistics Collection 3 -header_image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png +header_image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png version_number: 2.0.0 is_latest_version: true latest_version_link: null diff --git a/docs/data/product/dea-waterbodies-landsat/_access.md b/docs/data/product/dea-waterbodies-landsat/_access.md index a8d84576d..899b3e18a 100644 --- a/docs/data/product/dea-waterbodies-landsat/_access.md +++ b/docs/data/product/dea-waterbodies-landsat/_access.md @@ -14,7 +14,7 @@ Or, you can manually add the DEA Waterbodies layer to DEA Maps: 1. Click **Add to the map**, or the **+** symbol to add the data to the map. 1. You will now see the waterbodies overlaid on the map. -![DEA Maps with DEA Waterbodies loaded](/_files/dea-waterbodies/DEA_Waterbodies_v3.0_overview.jpg) +![DEA Maps with DEA Waterbodies loaded](/_media/dea-waterbodies/DEA_Waterbodies_v3.0_overview.jpg) ::: @@ -29,7 +29,7 @@ On the map, you can click any identified waterbody to view more information abou * **Pc Wet** — The ‘percentage of total surface area observed as wet’. This is the percentage of the total surface area of the waterbody that has been classified as ‘wet’ for each time step. (Note that this is not a volume.) * **Px Wet** — The ‘Wet Pixel Count’. This is the total number of pixels that have been classified as ‘wet’ for each time step. This value is useful if you need to calculate an area of wet pixels, since each pixel is 30 m × 30 m. -![DEA Maps loaded with DEA Waterbodies and showing Feature Information](/_files/dea-waterbodies/DEA_Waterbodies_v3.0_user_guide.jpg) +![DEA Maps loaded with DEA Waterbodies and showing Feature Information](/_media/dea-waterbodies/DEA_Waterbodies_v3.0_user_guide.jpg) ::: @@ -39,7 +39,7 @@ On the map, you can click any identified waterbody to view more information abou 1. Follow the same steps to add another waterbody to the time series chart. 1. It’s possible to compare even more waterbodies on this chart! -![DEA Maps loaded with DEA Waterbodies and comparing two waterbodies](/_files/dea-waterbodies/DEA_Waterbodies_v3.0_user_guide_compare.jpg) +![DEA Maps loaded with DEA Waterbodies and comparing two waterbodies](/_media/dea-waterbodies/DEA_Waterbodies_v3.0_user_guide_compare.jpg) ::: diff --git a/docs/data/product/dea-waterbodies-landsat/_data.yaml b/docs/data/product/dea-waterbodies-landsat/_data.yaml index 124bad432..c605ab0e9 100644 --- a/docs/data/product/dea-waterbodies-landsat/_data.yaml +++ b/docs/data/product/dea-waterbodies-landsat/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Waterbodies (Landsat) full_technical_name: Geoscience Australia Landsat Waterbodies Collection 3 -header_image: /_files/dea-waterbodies/DEA_Waterbodies_v3.0_header_image.jpg +header_image: /_media/dea-waterbodies/DEA_Waterbodies_v3.0_header_image.jpg version_number: 3.0.0 is_latest_version: true diff --git a/docs/data/product/dea-waterbodies-landsat/_description.md b/docs/data/product/dea-waterbodies-landsat/_description.md index 13242d65e..242333b02 100644 --- a/docs/data/product/dea-waterbodies-landsat/_description.md +++ b/docs/data/product/dea-waterbodies-landsat/_description.md @@ -31,7 +31,7 @@ The code used in the development of this product is available on [GitHub](https: The DEA Waterbodies v3.0.0 shapefile and CSV contain the following data. ```{eval-rst} -:download:`Download the Data Specification Tables as a PDF ` +:download:`Download the Data Specification Tables as a PDF ` ``` @@ -172,7 +172,7 @@ This product is based on [DEA Water Observations](/data/product/dea-water-observ DEA Waterbodies is a polygon-based view of DEA Water Observations (DEA WO), derived through the automatic processing of DEA WO to identify the outlines of persistent waterbodies across Australia. -:::{figure} /_files/cmi/V2Workflow.JPG +:::{figure} /_media/cmi/V2Workflow.JPG :alt: DEA Waterbodies workflow Flow diagram outlining the steps taken to produce DEA Waterbodies polygons. diff --git a/docs/data/product/dea-waterbodies-landsat/_faqs.md b/docs/data/product/dea-waterbodies-landsat/_faqs.md index 9dc23a4d6..79dc51a02 100644 --- a/docs/data/product/dea-waterbodies-landsat/_faqs.md +++ b/docs/data/product/dea-waterbodies-landsat/_faqs.md @@ -118,7 +118,7 @@ Some of the waterbody polygons contain holes or are quite irregularly shaped. Th The **DEA Water Observations** classifier that determines where water is observed does not work well where water is combined with vegetation. If there is vegetation obscuring the water (like a tree leaning across a river or a wetland), the classifier will not see this as water and the resulting mapped waterbody may be patchy. For example, water under mangroves. -:::{figure} /_files/dea-waterbodies/DEA_Waterbodies_v3.0_mangroves_faq.jpg +:::{figure} /_media/dea-waterbodies/DEA_Waterbodies_v3.0_mangroves_faq.jpg :alt: Screenshot of DEA Waterbodies showing marked line boundaries of blue water shape Mangroves at the mouth of Fitzroy River near Rockhampton as mapped within DEA Waterbodies. diff --git a/docs/data/product/dea-waterbodies-landsat/_history.md b/docs/data/product/dea-waterbodies-landsat/_history.md index f5de5ad0d..0d5a8077c 100644 --- a/docs/data/product/dea-waterbodies-landsat/_history.md +++ b/docs/data/product/dea-waterbodies-landsat/_history.md @@ -56,7 +56,7 @@ In v2, the size has been lowered slightly to 2,700 m2, which equates This change has resulted in the inclusion of some smaller waterbodies that were not mapped in v1. -:::{figure} /_files/cmi/WaterbodySize_0.JPG +:::{figure} /_media/cmi/WaterbodySize_0.JPG :alt: Waterbodies size distribution Comparison of the size distributions of DEA Waterbodies v1 and v2. a) Size distribution for polygons smaller than 1 km2. b) Small waterbodies identified in v2 that were not included in v1. @@ -76,7 +76,7 @@ Our automated waterbody polygon detection produces subpar results for large, ver As an example, Kati Thanda-Lake Eyre is a particularly complex polygon when mapped using automated methods, resulting in 3,118 polygons ranging from 900 m2 to 4,609 km2. Kati Thanda-Lake Eyre and Lake Everard in v1 and v2 are shown below. -:::{figure} /_files/cmi/SaltLakesSwap.JPG +:::{figure} /_media/cmi/SaltLakesSwap.JPG :alt: Complex polygons swapped for mapped polygons Complex polygons replaced for large salt lakes in South Australia. Original polygons are shown in red. Blue areas show where polygons were infilled by replacement with the Surface Hydrology Polygons (Regional). a) Focus on the northern edge of Kati Thanda-Lake Eyre, SA, showing the complexity of the automatically detected polygons. b) Lake Everard, SA. diff --git a/docs/data/product/dea-wetlands-insight-tool-qld/_data.yaml b/docs/data/product/dea-wetlands-insight-tool-qld/_data.yaml index 245f2911a..cccf876ff 100644 --- a/docs/data/product/dea-wetlands-insight-tool-qld/_data.yaml +++ b/docs/data/product/dea-wetlands-insight-tool-qld/_data.yaml @@ -4,7 +4,7 @@ short_name: DEA Wetlands Insight Tool (QLD) full_technical_name: Wetlands Insight Tool Queensland Wetlands Polygons -header_image: /_files/cmi/WITthumb.png +header_image: /_media/cmi/WITthumb.png version_number: 1.0.0 is_latest_version: true diff --git a/docs/data/product/dea-wetlands-insight-tool-qld/_description.md b/docs/data/product/dea-wetlands-insight-tool-qld/_description.md index 2da4acb55..ba5cda01b 100644 --- a/docs/data/product/dea-wetlands-insight-tool-qld/_description.md +++ b/docs/data/product/dea-wetlands-insight-tool-qld/_description.md @@ -6,7 +6,7 @@ Wetlands provide a wide range of ecosystem services including improving water qu The Wetlands Insight Tool (QLD) summarises how the amount of water, green vegetation, dry vegetation and bare soil varies over time within each wetland. It provides the user with the ability to compare how the wetland is behaving now with how it has behaved in the past. This allows users to identify how changes in water availability have affected the wetland. It achieves this by presenting a combined view of Water Observations from Space, Tasseled Cap Wetness and Fractional Cover measurements from the Landsat series of satellites, summarised as a stacked line plot to show how that wetland has changed over time. -![Wetlands Insight Tool stacked line plot for a seasonally inundated wetland](/_files/cmi/72035_EDWARD_RIVER_2a_sml.jpg) +![Wetlands Insight Tool stacked line plot for a seasonally inundated wetland](/_media/cmi/72035_EDWARD_RIVER_2a_sml.jpg) % ## Data description @@ -24,7 +24,7 @@ Care should be used when interpreting Wetlands Insight Tool (QLD) results as inc ## Technical information -![Wetlands Insight Tool flow chart. A flow chart that begins with a pixel, separates it on whether the pixel is classified by WOfS into water or not-water. The next step separates the pixel on whether the Tasseled Cap Wetness is greater than -350. If yes, the pixel is classified as wet. If no, the pixel percentage cover values are returned from Fractional Cover of Vegetation as bare soil, dry vegetation and green vegetation percentages. ](/_files/cmi/WITflowChartv2_950x615.PNG) +![Wetlands Insight Tool flow chart. A flow chart that begins with a pixel, separates it on whether the pixel is classified by WOfS into water or not-water. The next step separates the pixel on whether the Tasseled Cap Wetness is greater than -350. If yes, the pixel is classified as wet. If no, the pixel percentage cover values are returned from Fractional Cover of Vegetation as bare soil, dry vegetation and green vegetation percentages. ](/_media/cmi/WITflowChartv2_950x615.PNG) Every pixel within a wetland polygon is evaluated using this decision tree at every time step, and the results are tabulated to create the input data to the stacked line plot for that wetland. diff --git a/docs/data/product/dea-wetlands-insight-tool-qld/_quality.md b/docs/data/product/dea-wetlands-insight-tool-qld/_quality.md index b5f0f139e..52f0f8ae2 100644 --- a/docs/data/product/dea-wetlands-insight-tool-qld/_quality.md +++ b/docs/data/product/dea-wetlands-insight-tool-qld/_quality.md @@ -10,7 +10,7 @@ The 30 metre resolution of Landsat imposes an intrinsic limitation on the Wetlan The period of time between when Landsat 5 ceased operations (November 2011) and Landsat 8 data became routinely available (May 2013) is likely to be inaccurate. There will be some wetlands, close the centre of Landsat paths where Landsat 7 continued to capture suitable (gap free) data, however it is safer, as a general rule, to consider this period as 'low data quality'. -![Wetlands Insight Tool stacked line plot for a seasonally inundated wetland](/_files/cmi/72035_EDWARD_RIVER_2a_sml_0.jpg) +![Wetlands Insight Tool stacked line plot for a seasonally inundated wetland](/_media/cmi/72035_EDWARD_RIVER_2a_sml_0.jpg) ## Quality assurance diff --git a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_data.yaml b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_data.yaml index 237b4543c..f96b0114c 100644 --- a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_data.yaml +++ b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_data.yaml @@ -4,7 +4,7 @@ short_name: " DEA Wetlands Insight Tool (Ramsar Wetlands)" full_technical_name: Wetlands Insight Tool Ramsar Wetlands Polygons -header_image: /_files/cmi/WITthumb.png +header_image: /_media/cmi/WITthumb.png version_number: 4.0.0 is_latest_version: true diff --git a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_description.md b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_description.md index 26aad891d..d2e24971b 100644 --- a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_description.md +++ b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_description.md @@ -8,7 +8,7 @@ The Ramsar Wetlands of Australia Dataset is available under a [Creative Commons The Wetlands Insight Tool (Ramsar Wetlands) summarises how the amount of water, green vegetation, dry vegetation and bare soil varies over time within each wetland boundary. It provides the user with the ability to compare how the wetland is behaving now with how it has behaved in the past. This allows users to identify how changes in water availability have affected the wetland. It achieves this by presenting a combined view of Water Observations from Space (DEA Water Observations), Tasseled Cap Wetness (DEA Wetness Percentiles) and Fractional Cover (DEA Fractional Cover) measurements from the Landsat series of satellites, summarised as a stacked line plot to show how that wetland has changed over time. -![Wetlands Insight Tool plot for Narran Lakes Nature Reserve, New South Wales, showing variations in open water, wet, green vegetation, dry vegetation and bare soil from 1987 to 2021](/_files/cmi/NarranLakesNatureReserveNSWWIT.png) +![Wetlands Insight Tool plot for Narran Lakes Nature Reserve, New South Wales, showing variations in open water, wet, green vegetation, dry vegetation and bare soil from 1987 to 2021](/_media/cmi/NarranLakesNatureReserveNSWWIT.png) % ## Data description @@ -28,7 +28,7 @@ Care should be used when interpreting Wetlands Insight Tool (Ramsar Wetlands) re Every pixel within a wetland polygon is evaluated using this decision tree at every time step, and the results are tabulated to create the input data to the stacked line plot for that wetland. The image shows a flow chart where a pixel is checked to see if it is cloudy or nodata, classified by WOfS as water, the Tasseled Cap Wetness value is greater than negative 350. if yes the pixel is classified as cloudy or notdata, then open water, then wet, and if no then the Fractional Cover of Vegetation percentage is retrieved for the pixel and the percentage of green vegetation, dry vegetation and bare soil is returned. -![WIT flow chart](/_files/cmi/WITflowChartv2_950x615.PNG) +![WIT flow chart](/_media/cmi/WITflowChartv2_950x615.PNG) The code base used to generate the Ramsar Wetlands Insight Tool results is available at [https://github.com/GeoscienceAustralia/wit\_tooling](https://github.com/GeoscienceAustralia/wit_tooling) diff --git a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_quality.md b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_quality.md index c0277b187..59d695303 100644 --- a/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_quality.md +++ b/docs/data/product/dea-wetlands-insight-tool-ramsar-wetlands/_quality.md @@ -10,7 +10,7 @@ The 30 metre resolution of Landsat imposes an intrinsic limitation on the Wetlan The period of time between when Landsat 5 ceased operations (November 2011) and Landsat 8 data became routinely available (May 2013) is likely to be inaccurate. There will be some wetlands, close to the centre of Landsat paths where Landsat 7 continued to capture suitable (gap free) data, however it is safer, as a general rule, to consider this period as 'low data quality'. Other periods where less than four observations occur in a calendar year are also considered 'low data quality'. Regions of low data quality are hashed with a pale rectangular overlay in the Wetlands Insight Tool plots. -![Wetlands Insight Tool plot for Narran Lakes Nature Reserve, New South Wales, showing variations in open water, wet, green vegetation, dry vegetation and bare soil from 1987 to 2021](/_files/cmi/NarranLakesNatureReserveNSWWIT.png) +![Wetlands Insight Tool plot for Narran Lakes Nature Reserve, New South Wales, showing variations in open water, wet, green vegetation, dry vegetation and bare soil from 1987 to 2021](/_media/cmi/NarranLakesNatureReserveNSWWIT.png) ## Quality assurance diff --git a/docs/data/product/ga-land-cover-terra-modis/_data.yaml b/docs/data/product/ga-land-cover-terra-modis/_data.yaml index a677b91ef..98b4d3b59 100644 --- a/docs/data/product/ga-land-cover-terra-modis/_data.yaml +++ b/docs/data/product/ga-land-cover-terra-modis/_data.yaml @@ -4,7 +4,7 @@ short_name: Geoscience Australia Land Cover (Terra MODIS) full_technical_name: "Dynamic Land Cover Dataset 250m 2.1.0 " -header_image: /_files/cmi/dlcd.png +header_image: /_media/cmi/dlcd.png version_number: 2.1.0 is_latest_version: true diff --git a/docs/data/theme/baseline-satellite-data/_data.yaml b/docs/data/theme/baseline-satellite-data/_data.yaml index f8f7b7584..031bb19a2 100644 --- a/docs/data/theme/baseline-satellite-data/_data.yaml +++ b/docs/data/theme/baseline-satellite-data/_data.yaml @@ -4,16 +4,16 @@ description: Browse through DEA's foundational data products, including satellit cards: - name: DEA Surface Reflectance link: /data/category/dea-surface-reflectance/ - image: /_files/cmi/surface_reflectance_2_NBARTa.png + image: /_media/cmi/surface_reflectance_2_NBARTa.png - name: Australian National Spectral Database link: /data/product/australian-national-spectral-database/ - image: /_files/cmi/spectral_2.jpg + image: /_media/cmi/spectral_2.jpg - name: Australian Geographic Reference Image link: /data/product/australian-geographic-reference-image/ - image: /_files/cmi/agri.jpg + image: /_media/cmi/agri.jpg - name: Daily SatPaths link: /data/product/daily-satpaths-beta/ - image: /_files/cmi/SatPaths_image.png + image: /_media/cmi/SatPaths_image.png - name: DEA Geometric Median and Mean Absolute Deviation (GeoMAD) link: /data/product/dea-geometric-median-and-median-absolute-deviation-landsat/ - image: /_files/cmi/Geomedian_Australia_2014.jpg + image: /_media/cmi/Geomedian_Australia_2014.jpg diff --git a/docs/data/theme/external-data/_data.yaml b/docs/data/theme/external-data/_data.yaml index 611ab9ba2..944daa863 100644 --- a/docs/data/theme/external-data/_data.yaml +++ b/docs/data/theme/external-data/_data.yaml @@ -4,7 +4,7 @@ description: DEA provides access to certain external data products to assist wit cards: - name: Elevation and bathymetry link: /data/category/elevation-and-bathymetry/ - image: /_files/external-data/ga_srtm_thumbnail.jpg + image: /_media/external-data/ga_srtm_thumbnail.jpg - name: Land use link: /data/category/land-use/ - image: /_files/external-data/abares_clum_2023.thumbnail.jpg + image: /_media/external-data/abares_clum_2023.thumbnail.jpg diff --git a/docs/data/theme/hazards/_data.yaml b/docs/data/theme/hazards/_data.yaml index c9f707afc..26b86cae0 100644 --- a/docs/data/theme/hazards/_data.yaml +++ b/docs/data/theme/hazards/_data.yaml @@ -4,7 +4,7 @@ description: Gain insight into the behaviour and history of fires across Austral cards: - name: DEA Hotspots link: /data/product/dea-hotspots/ - image: /_files/cmi/hotspots.jpg + image: /_media/cmi/hotspots.jpg - name: DEA Burnt Area Characteristic Layers Sentinel-2 Near-Real Time link: /data/product/dea-burnt-area-characteristic-layers-sentinel-2-near-real-time/ - image: /_files/cmi/ga_s2_ba_provisional_3_interim_thumbnail.jpg + image: /_media/cmi/ga_s2_ba_provisional_3_interim_thumbnail.jpg diff --git a/docs/data/theme/inland-water/_data.yaml b/docs/data/theme/inland-water/_data.yaml index c295d525c..5b8c8a3b8 100644 --- a/docs/data/theme/inland-water/_data.yaml +++ b/docs/data/theme/inland-water/_data.yaml @@ -4,10 +4,10 @@ description: Analyse inland water across Australia, including changes in water e cards: - name: DEA Wetlands Insight Tool link: /data/category/dea-wetlands-insight-tool/ - image: /_files/cmi/PlaceholderWIT.PNG + image: /_media/cmi/PlaceholderWIT.PNG - name: DEA Water Observations link: /data/category/dea-water-observations/ - image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png + image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png - name: DEA Waterbodies link: /data/product/dea-waterbodies-landsat/ - image: /_files/cmi/waterbodies.jpg + image: /_media/cmi/waterbodies.jpg diff --git a/docs/data/theme/land-and-vegetation/_data.yaml b/docs/data/theme/land-and-vegetation/_data.yaml index b064689a8..82ce450a8 100644 --- a/docs/data/theme/land-and-vegetation/_data.yaml +++ b/docs/data/theme/land-and-vegetation/_data.yaml @@ -4,13 +4,13 @@ description: See how the land surface and vegetation of Australia have changed o cards: - name: DEA Land Cover link: /data/product/dea-land-cover-landsat/ - image: /_files/cmi/DEA_Land_Cover_1_0_0_Lvl4_2015.jpg + image: /_media/cmi/DEA_Land_Cover_1_0_0_Lvl4_2015.jpg - name: DEA Fractional Cover link: /data/category/dea-fractional-cover/ - image: /_files/cmi/FractionalCover1.jpg + image: /_media/cmi/FractionalCover1.jpg - name: DEA Mangroves link: /data/product/dea-mangrove-canopy-cover-landsat/ - image: /_files/cmi/DEA-mangroves.jpg + image: /_media/cmi/DEA-mangroves.jpg - name: DEA Tasseled Cap Percentiles link: /data/product/dea-tasseled-cap-percentiles-landsat/ - image: /_files/cmi/TCWpercentiles.png + image: /_media/cmi/TCWpercentiles.png diff --git a/docs/data/theme/sea-ocean-and-coast/_data.yaml b/docs/data/theme/sea-ocean-and-coast/_data.yaml index b882d69df..5bf1849fd 100644 --- a/docs/data/theme/sea-ocean-and-coast/_data.yaml +++ b/docs/data/theme/sea-ocean-and-coast/_data.yaml @@ -4,13 +4,13 @@ description: Explore Australia's marine and coastal environments, including dyna cards: - name: DEA Coastlines link: /data/product/dea-coastlines/ - image: /_files/cmi/thumbnail_vertical.png + image: /_media/cmi/thumbnail_vertical.png - name: DEA High and Low Tide Imagery link: /data/product/dea-high-and-low-tide-imagery-landsat/ - image: /_files/cmi/HLTCv2.png + image: /_media/cmi/HLTCv2.png - name: DEA Intertidal link: /data/product/dea-intertidal/ - image: /_files/dea-intertidal/DEAIntertidal_prettypic_Elevation_ShoalPointQLD_XS_Size.png + image: /_media/dea-intertidal/DEAIntertidal_prettypic_Elevation_ShoalPointQLD_XS_Size.png - name: DEA Intertidal Extents (ITEM) link: /data/product/dea-intertidal-extents-landsat/ - image: /_files/cmi/intertidal_extents.png + image: /_media/cmi/intertidal_extents.png diff --git a/docs/data/version-history/dea-fractional-cover-landsat-2.2.1/_data.yaml b/docs/data/version-history/dea-fractional-cover-landsat-2.2.1/_data.yaml index d848dbb3f..caa37da66 100644 --- a/docs/data/version-history/dea-fractional-cover-landsat-2.2.1/_data.yaml +++ b/docs/data/version-history/dea-fractional-cover-landsat-2.2.1/_data.yaml @@ -5,7 +5,7 @@ title: DEA Fractional Cover (Landsat) long_title: Fractional Cover 25m 2.2.1 -header_image: /_files/cmi/FractionalCover1.jpg +header_image: /_media/cmi/FractionalCover1.jpg version: 2.2.1 is_latest_version: false latest_version_link: /data/product/dea-fractional-cover-landsat/ diff --git a/docs/data/version-history/dea-fractional-cover-landsat-2.3.1/_data.yaml b/docs/data/version-history/dea-fractional-cover-landsat-2.3.1/_data.yaml index 6f9ba620d..a3a1a14e1 100644 --- a/docs/data/version-history/dea-fractional-cover-landsat-2.3.1/_data.yaml +++ b/docs/data/version-history/dea-fractional-cover-landsat-2.3.1/_data.yaml @@ -5,7 +5,7 @@ title: DEA Fractional Cover (Landsat) long_title: Geoscience Australia Landsat Fractional Cover Collection 3 -header_image: /_files/cmi/FractionalCover1.jpg +header_image: /_media/cmi/FractionalCover1.jpg version: 2.3.1 is_latest_version: false latest_version_link: /data/product/dea-fractional-cover-landsat/ diff --git a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-2.2.1/_data.yaml b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-2.2.1/_data.yaml index 1b2dae7e8..52e9f2754 100644 --- a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-2.2.1/_data.yaml +++ b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-2.2.1/_data.yaml @@ -5,7 +5,7 @@ title: DEA Fractional Cover Percentiles (Landsat) long_title: Fractional Cover 25m Percentiles 2.2.1 -header_image: /_files/cmi/FractionalCover1_0.jpg +header_image: /_media/cmi/FractionalCover1_0.jpg version: 2.2.1 is_latest_version: false latest_version_link: /data/product/dea-fractional-cover-percentiles-landsat/ diff --git a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_access.md b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_access.md index 4bec7ac8f..3da4f8971 100644 --- a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_access.md +++ b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_access.md @@ -15,6 +15,6 @@ To view and access the data interactively: 5) Chose the Percentile you would like to display from the drop down Styles menu -![DEA Maps menu for choosing percentile](/_files/cmi/Maps-percentiles-dropdown-menu.png) +![DEA Maps menu for choosing percentile](/_media/cmi/Maps-percentiles-dropdown-menu.png) ::: diff --git a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_data.yaml b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_data.yaml index 6c050b4ac..424680c24 100644 --- a/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_data.yaml +++ b/docs/data/version-history/dea-fractional-cover-percentiles-landsat-3.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Fractional Cover Percentiles (Landsat) long_title: Geoscience Australia Landsat Fractional Cover Percentiles Collection 3 -header_image: /_files/cmi/FractionalCover1_0.jpg +header_image: /_media/cmi/FractionalCover1_0.jpg version: 3.0.0 is_latest_version: false latest_version_link: /data/product/dea-fractional-cover-percentiles-landsat/ diff --git a/docs/data/version-history/dea-geometric-median-and-median-absolute-deviation-landsat-3.1.0/_data.yaml b/docs/data/version-history/dea-geometric-median-and-median-absolute-deviation-landsat-3.1.0/_data.yaml index 9e0e84214..f6f3fa83a 100644 --- a/docs/data/version-history/dea-geometric-median-and-median-absolute-deviation-landsat-3.1.0/_data.yaml +++ b/docs/data/version-history/dea-geometric-median-and-median-absolute-deviation-landsat-3.1.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Geometric Median and Median Absolute Deviation (Landsat) long_title: Geoscience Australia Landsat Geometric Median and Median Absolute Deviation Collection 3 -header_image: /_files/cmi/Geomedian_Australia_2014.jpg +header_image: /_media/cmi/Geomedian_Australia_2014.jpg version: 3.1.0 is_latest_version: false latest_version_link: /data/product/dea-geometric-median-and-median-absolute-deviation-landsat/ diff --git a/docs/data/version-history/dea-intertidal-elevation-landsat-1.0.0/_data.yaml b/docs/data/version-history/dea-intertidal-elevation-landsat-1.0.0/_data.yaml index 646418e14..41bece87c 100644 --- a/docs/data/version-history/dea-intertidal-elevation-landsat-1.0.0/_data.yaml +++ b/docs/data/version-history/dea-intertidal-elevation-landsat-1.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Intertidal Elevation (Landsat) long_title: "National Intertidal Digital Elevation Model 25m 1.0.0 " -header_image: /_files/cmi/nidem_2_-_crop_3_1.jpg +header_image: /_media/cmi/nidem_2_-_crop_3_1.jpg version: 1.0.0 is_latest_version: false latest_version_link: /data/product/dea-intertidal/ diff --git a/docs/data/version-history/dea-mangrove-canopy-cover-landsat-2.0.2/_data.yaml b/docs/data/version-history/dea-mangrove-canopy-cover-landsat-2.0.2/_data.yaml index bf35601a7..95830b4a7 100644 --- a/docs/data/version-history/dea-mangrove-canopy-cover-landsat-2.0.2/_data.yaml +++ b/docs/data/version-history/dea-mangrove-canopy-cover-landsat-2.0.2/_data.yaml @@ -5,7 +5,7 @@ title: DEA Mangrove Canopy Cover (Landsat) long_title: Mangrove Canopy Cover 25m 2.0.2 -header_image: /_files/cmi/DEA-mangroves.jpg +header_image: /_media/cmi/DEA-mangroves.jpg version: 2.0.2 is_latest_version: false latest_version_link: /data/product/dea-mangrove-canopy-cover-landsat/ diff --git a/docs/data/version-history/dea-mangrove-canopy-cover-landsat-3.0.0/_data.yaml b/docs/data/version-history/dea-mangrove-canopy-cover-landsat-3.0.0/_data.yaml index d69685fe0..f6cf6ef4f 100644 --- a/docs/data/version-history/dea-mangrove-canopy-cover-landsat-3.0.0/_data.yaml +++ b/docs/data/version-history/dea-mangrove-canopy-cover-landsat-3.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Mangrove Canopy Cover (Landsat) long_title: Geoscience Australia Mangrove Canopy Cover Collection 3 -header_image: /_files/cmi/DEA-mangroves.jpg +header_image: /_media/cmi/DEA-mangroves.jpg version: 3.0.0 is_latest_version: false latest_version_link: /data/product/dea-mangrove-canopy-cover-landsat/ diff --git a/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_data.yaml b/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_data.yaml index 944d6e6a2..6812f4386 100644 --- a/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_data.yaml +++ b/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Pixel Quality Count (Landsat) long_title: Pixel Quality Count 25m 2.0.0 -header_image: /_files/cmi/Observation_density.png +header_image: /_media/cmi/Observation_density.png version: 2.0.0 is_latest_version: false latest_version_link: /data/product/dea-surface-reflectance-oa-landsat-8-oli-tirs/ diff --git a/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_details.md b/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_details.md index 1297d3f4e..5d2220714 100644 --- a/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_details.md +++ b/docs/data/version-history/dea-pixel-quality-count-landsat-2.0.0/_details.md @@ -64,7 +64,7 @@ This product will allow users to evaluate how mission factors (such as scan-line The darkest blue tones indicate the lowest observation counts, whereas the darkest red tones indicate the highest observation counts. Roebuck Bay in Western Australia (shown below) falls within the sidelap between adjacent paths, and is therefore observed twice as frequently. However errors of commission with the cloud masks and sensor saturation over bright targets reduce the number of 'clear' observations over some coastal cover types. The 'venetian' blinds artefacts exist because the Landsat 7 scan-line-corrector (SLC) errors are not randomly distributed, so there are areas with higher and lower frequency of SLC gaps. -![Clear observation count for Roebuck Bay in Western Australia](/_files/cmi/Observation_density.png) +![Clear observation count for Roebuck Bay in Western Australia](/_media/cmi/Observation_density.png) % ## Lineage diff --git a/docs/data/version-history/dea-surface-reflectance-geomedian-landsat-2.0.0/_data.yaml b/docs/data/version-history/dea-surface-reflectance-geomedian-landsat-2.0.0/_data.yaml index ed12cc583..6620035b4 100644 --- a/docs/data/version-history/dea-surface-reflectance-geomedian-landsat-2.0.0/_data.yaml +++ b/docs/data/version-history/dea-surface-reflectance-geomedian-landsat-2.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Surface Reflectance Geomedian (Landsat) long_title: Surface Reflectance 25m Geomedian 2.0.0 -header_image: /_files/cmi/geomedian_banner.jpg +header_image: /_media/cmi/geomedian_banner.jpg version: 2.0.0 is_latest_version: false latest_version_link: /data/product/dea-geometric-median-and-median-absolute-deviation-landsat/ diff --git a/docs/data/version-history/dea-surface-reflectance-median-absolute-deviation-landsat-2.1.0/_data.yaml b/docs/data/version-history/dea-surface-reflectance-median-absolute-deviation-landsat-2.1.0/_data.yaml index d9c65359e..87b8fef45 100644 --- a/docs/data/version-history/dea-surface-reflectance-median-absolute-deviation-landsat-2.1.0/_data.yaml +++ b/docs/data/version-history/dea-surface-reflectance-median-absolute-deviation-landsat-2.1.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Surface Reflectance Median Absolute Deviation (Landsat) long_title: Surface Reflectance Euclidean, Spectral and Bray-Curtis Median Absolute Deviation 2.1.0 -header_image: /_files/cmi/tripleMAD_banner.jpg +header_image: /_media/cmi/tripleMAD_banner.jpg version: 2.1.0 is_latest_version: false latest_version_link: /data/product/dea-geometric-median-and-median-absolute-deviation-landsat/ diff --git a/docs/data/version-history/dea-tasseled-cap-percentiles-landsat-1.0.0/_data.yaml b/docs/data/version-history/dea-tasseled-cap-percentiles-landsat-1.0.0/_data.yaml index 71b274431..c72c23f0e 100644 --- a/docs/data/version-history/dea-tasseled-cap-percentiles-landsat-1.0.0/_data.yaml +++ b/docs/data/version-history/dea-tasseled-cap-percentiles-landsat-1.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Tasseled Cap Percentiles (Landsat) long_title: Geoscience Australia Tasseled Cap Percentiles Collection 3 -header_image: /_files/cmi/TCWpercentiles.png +header_image: /_media/cmi/TCWpercentiles.png version: 1.0.0 is_latest_version: false latest_version_link: /data/product/dea-tasseled-cap-percentiles-landsat/ diff --git a/docs/data/version-history/dea-water-observations-filtered-statistics-landsat-2.1.5/_data.yaml b/docs/data/version-history/dea-water-observations-filtered-statistics-landsat-2.1.5/_data.yaml index 0ff5594f4..a0c468505 100644 --- a/docs/data/version-history/dea-water-observations-filtered-statistics-landsat-2.1.5/_data.yaml +++ b/docs/data/version-history/dea-water-observations-filtered-statistics-landsat-2.1.5/_data.yaml @@ -5,7 +5,7 @@ title: DEA Water Observations Filtered Statistics (Landsat) long_title: Water Observations from Space Filtered Statistics 25m 2.1.5 -header_image: /_files/cmi/water_observations_filtered_stats_1_0.jpg +header_image: /_media/cmi/water_observations_filtered_stats_1_0.jpg version: 2.1.5 is_latest_version: false latest_version_link: /data/product/dea-water-observations-statistics-landsat/ diff --git a/docs/data/version-history/dea-water-observations-landsat-1.6.0/_data.yaml b/docs/data/version-history/dea-water-observations-landsat-1.6.0/_data.yaml index 340a9adf0..9ce56efde 100644 --- a/docs/data/version-history/dea-water-observations-landsat-1.6.0/_data.yaml +++ b/docs/data/version-history/dea-water-observations-landsat-1.6.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Water Observations (Landsat) long_title: Geoscience Australia Landsat Water Observations Collection 3 -header_image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png +header_image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png version: 1.6.0 is_latest_version: false latest_version_link: /data/product/dea-water-observations-landsat/ diff --git a/docs/data/version-history/dea-water-observations-landsat-2.1.5/_data.yaml b/docs/data/version-history/dea-water-observations-landsat-2.1.5/_data.yaml index 0cb82b7b1..f6dfbbe77 100644 --- a/docs/data/version-history/dea-water-observations-landsat-2.1.5/_data.yaml +++ b/docs/data/version-history/dea-water-observations-landsat-2.1.5/_data.yaml @@ -5,7 +5,7 @@ title: DEA Water Observations (Landsat) long_title: Water Observations from Space 25m 2.1.5 -header_image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png +header_image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png version: 2.1.5 is_latest_version: false latest_version_link: /data/product/dea-water-observations-landsat/ diff --git a/docs/data/version-history/dea-water-observations-statistics-landsat-1.6.0/_data.yaml b/docs/data/version-history/dea-water-observations-statistics-landsat-1.6.0/_data.yaml index 7850c7780..302eb8982 100644 --- a/docs/data/version-history/dea-water-observations-statistics-landsat-1.6.0/_data.yaml +++ b/docs/data/version-history/dea-water-observations-statistics-landsat-1.6.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Water Observations Statistics (Landsat) long_title: Geoscience Australia Landsat Water Observation Statistics Collection 3 -header_image: /_files/cmi/WOfS-Burketown-Normanton-QLD.png +header_image: /_media/cmi/WOfS-Burketown-Normanton-QLD.png version: 1.6.0 is_latest_version: false latest_version_link: /data/product/dea-water-observations-statistics-landsat/ diff --git a/docs/data/version-history/dea-water-observations-statistics-landsat-2.1.5/_data.yaml b/docs/data/version-history/dea-water-observations-statistics-landsat-2.1.5/_data.yaml index 6e0c94028..200d13516 100644 --- a/docs/data/version-history/dea-water-observations-statistics-landsat-2.1.5/_data.yaml +++ b/docs/data/version-history/dea-water-observations-statistics-landsat-2.1.5/_data.yaml @@ -5,7 +5,7 @@ title: DEA Water Observations Statistics (Landsat) long_title: Water Observations from Space Statistics 25m 2.1.5 -header_image: /_files/cmi/water_observations_1_banner_0.jpg +header_image: /_media/cmi/water_observations_1_banner_0.jpg version: 2.1.5 is_latest_version: false latest_version_link: /data/product/dea-water-observations-statistics-landsat/ diff --git a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_access.md b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_access.md index c407a6bab..5eefd415d 100644 --- a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_access.md +++ b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_access.md @@ -10,7 +10,7 @@ To explore DEA Waterbodies on the interactive DEA Maps platform, visit the link and dismiss the overlay. DEA Waterbodies will already be loaded on the map. -![DEA Maps with DEA Waterbodies loaded](/_files/cmi/DEA_Maps_screenshot_DEAWaterbodies1.jpg) +![DEA Maps with DEA Waterbodies loaded](/_media/cmi/DEA_Maps_screenshot_DEAWaterbodies1.jpg) To add DEA Waterbodies to DEA Maps manually: @@ -29,7 +29,7 @@ Yes! See [Waterbodies user guide](https://www.dea.ga.gov.au/products/dea-waterbodies/user-guide) to discover how to get the most out of the DEA Maps presentation of DEA Waterbodies including how to explore time series, and how to download the data from a particular time series. -![DEA Maps loaded with DEA Waterbodies and showing Feature Information](/_files/cmi/DEA_Maps_screenshot_DEAWaterbodies_FeatureInformation1.jpg) +![DEA Maps loaded with DEA Waterbodies and showing Feature Information](/_media/cmi/DEA_Maps_screenshot_DEAWaterbodies_FeatureInformation1.jpg) ::: :::{dropdown} What about if I have more questions? diff --git a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_data.yaml b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_data.yaml index 4b154af8d..687cee57f 100644 --- a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_data.yaml +++ b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_data.yaml @@ -2,7 +2,7 @@ title: DEA Waterbodies (Landsat) long_title: Geoscience Australia Landsat Waterbodies Collection 3 -header_image: /_files/cmi/waterbodies.jpg +header_image: /_media/cmi/waterbodies.jpg version: 2.0.0 is_latest_version: false latest_version_link: /data/product/dea-waterbodies-landsat/ diff --git a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_details.md b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_details.md index 1453ec05d..ddb47ff6d 100644 --- a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_details.md +++ b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_details.md @@ -30,7 +30,7 @@ The DEA Waterbodies product is comprised of two key components: DEA Waterbodies is a polygon-based view of DEA Water Observations (DEA WO), derived through the automatic processing of DEA WO to identify the outlines of persistent waterbodies across Australia (Figure 1). -:::{figure} /_files/cmi/V2Workflow.JPG +:::{figure} /_media/cmi/V2Workflow.JPG :alt: DEA Waterbodies workflow Figure 1: Flow diagram outlining the steps taken to produce DEA Waterbodies v2 polygons diff --git a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_faqs.md b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_faqs.md index 67918209b..aff28e02f 100644 --- a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_faqs.md +++ b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_faqs.md @@ -105,7 +105,7 @@ Some of the waterbody polygons contain holes, or are quite irregularly shaped. T Additionally the **DEA Water Observations** classifier that determines where water is observed does not work well where water is combined with vegetation. If there is vegetation obscuring the water (like a tree leaning across a river or a wetland), the classifier will not see this as water and the resulting mapped waterbody may be patchy. -:::{figure} /_files/dea-waterbodies/dea-waterbodies-kati-thanda-lake-eyre.png +:::{figure} /_media/dea-waterbodies/dea-waterbodies-kati-thanda-lake-eyre.png :alt: Screenshot of DEA Waterbodies website showing marked line boundaries of blue water shape Kati Thanda–Lake Eyre as mapped within DEA Waterbodies diff --git a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_history.md b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_history.md index a31305890..1e214720d 100644 --- a/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_history.md +++ b/docs/data/version-history/dea-waterbodies-landsat-2.0.0/_history.md @@ -22,7 +22,7 @@ In v2, the size has been lowered slightly to 2,700m2, which equates to 3 Landsat This change has resulted in the inclusion of some smaller waterbodies that were not mapped in v1 (Figure 1). -:::{figure} /_files/cmi/WaterbodySize_0.JPG +:::{figure} /_media/cmi/WaterbodySize_0.JPG :alt: Waterbodies size distribution Figure 1: Comparison of the size distributions of DEA Waterbodies v1 and v2. a) Size distribution for polygons smaller than 1km2. b) Small waterbodies identified in v2 that were not included in v1. @@ -41,7 +41,7 @@ Our automated waterbody polygon detection produces subpar results for large, ver As an example, Kati Thanda is a particularly complex polygon when mapped using automated methods, resulting in 3,118 polygons ranging from 900 m2 to 4,609 km2. Kati Thanda and Lake Everard in v1 and v2 are shown in Figure 2. -:::{figure} /_files/cmi/SaltLakesSwap.JPG +:::{figure} /_media/cmi/SaltLakesSwap.JPG :alt: Complex polygons swapped for mapped polygons Figure 2: Complex polygons replaced for large salt lakes in South Australia. Original polygons are shown in red in the foreground. The polygons that replaced these are shown in the background in blue. a) Focus on the northern edge of Kati Thanda, SA, showing the complexity of the automatically detected polygons. b) Lake Everard, SA. diff --git a/docs/data/version-history/dea-wetness-percentiles-landsat-2.0.0/_data.yaml b/docs/data/version-history/dea-wetness-percentiles-landsat-2.0.0/_data.yaml index 5aa4667e8..31e391a5c 100644 --- a/docs/data/version-history/dea-wetness-percentiles-landsat-2.0.0/_data.yaml +++ b/docs/data/version-history/dea-wetness-percentiles-landsat-2.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Wetness Percentiles (Landsat) long_title: Tasseled Cap Wetness Percentiles 25m 2.0.0 -header_image: /_files/cmi/Kakadu-Mary_TCW-percentiles-wide.jpg +header_image: /_media/cmi/Kakadu-Mary_TCW-percentiles-wide.jpg version: 2.0.0 is_latest_version: false latest_version_link: /data/product/dea-tasseled-cap-percentiles-landsat/ diff --git a/docs/data/version-history/waterbodies-1.0.0/_data.yaml b/docs/data/version-history/waterbodies-1.0.0/_data.yaml index 10b3fc31d..a3b0e1ffd 100644 --- a/docs/data/version-history/waterbodies-1.0.0/_data.yaml +++ b/docs/data/version-history/waterbodies-1.0.0/_data.yaml @@ -5,7 +5,7 @@ title: DEA Waterbodies (Landsat) long_title: Digital Earth Australia Waterbodies -header_image: /_files/cmi/waterbodies.jpg +header_image: /_media/cmi/waterbodies.jpg version: 1.0.0 is_latest_version: false latest_version_link: /data/product/dea-waterbodies-landsat/ diff --git a/docs/dea-notebooks/_data.yaml b/docs/dea-notebooks/_data.yaml index aa3f672c5..ee4e5bb8a 100644 --- a/docs/dea-notebooks/_data.yaml +++ b/docs/dea-notebooks/_data.yaml @@ -4,23 +4,23 @@ description: "The Jupyter Notebooks and Python tools in this repository are for cards: - name: Readme link: /notebooks/README/ - image: /_files/default/dea-earth-thumbnail.* + image: /_media/default/dea-earth-thumbnail.* - name: Beginner’s guide link: /notebooks/Beginners_guide/README/ - image: /_files/dea-notebooks-start-page/beginners-guide.* + image: /_media/dea-notebooks-start-page/beginners-guide.* - name: DEA products link: /notebooks/DEA_products/README/ - image: /_files/dea-notebooks-start-page/dea-products.* + image: /_media/dea-notebooks-start-page/dea-products.* - name: How-to guides link: /notebooks/How_to_guides/README/ - image: /_files/dea-notebooks-start-page/how-to-guides.* + image: /_media/dea-notebooks-start-page/how-to-guides.* - name: Interactive apps link: /notebooks/Interactive_apps/README/ - image: /_files/dea-notebooks-start-page/interactive-apps.* + image: /_media/dea-notebooks-start-page/interactive-apps.* - name: Real-world examples link: /notebooks/Real_world_examples/README/ - image: /_files/dea-notebooks-start-page/real-world-examples.* + image: /_media/dea-notebooks-start-page/real-world-examples.* - name: DEA Tools Package link: /notebooks/Tools/ - image: /_files/dea-notebooks-start-page/dea-tools-package.* + image: /_media/dea-notebooks-start-page/dea-tools-package.* diff --git a/docs/guides/_data.yaml b/docs/guides/_data.yaml index 305091cfb..d5738ad48 100644 --- a/docs/guides/_data.yaml +++ b/docs/guides/_data.yaml @@ -3,14 +3,14 @@ description: This is where you will find useful guides and information about DEA cards: - name: Overview - image: /_files/user-guides-start-page/overview.* + image: /_media/user-guides-start-page/overview.* description: "Digital Earth Australia creates free and open satellite data products for the benefit of Australia. `Get started with DEA `_." - name: Access - image: /_files/user-guides-start-page/access.* + image: /_media/user-guides-start-page/access.* description: "Learn how to access the `DEA Maps `_, `DEA Explorer `_, `DEA Sandbox `_, `NCI `_, `STAC `_, and more." - name: Reference - image: /_files/user-guides-start-page/reference.* + image: /_media/user-guides-start-page/reference.* description: "Here you will find reference guides like the `DEA Naming Conventions `_ and `DEA Summary Product Grid `_." - name: Appendix - image: /_files/default/dea-earth-thumbnail.* + image: /_media/default/dea-earth-thumbnail.* description: "The `Frequently asked questions `_ and the `Glossary `_ can be helpful places to find answers." diff --git a/docs/guides/reference/analysis-ready-data-example-queries.md b/docs/guides/reference/analysis-ready-data-example-queries.md index 8f612455d..1e9483ca2 100644 --- a/docs/guides/reference/analysis-ready-data-example-queries.md +++ b/docs/guides/reference/analysis-ready-data-example-queries.md @@ -41,19 +41,19 @@ data = dc.load( The Data Cube query produces the following images: -![AB 3](/_files/cmi/figure_AB_new_3.JPG) +![AB 3](/_media/cmi/figure_AB_new_3.JPG) **Image A** is the false colour composite ['nbart_nir', 'nbart_red', 'nbart_green'] displayed as [Red, Green, Blue] from the **GA Landsat 5 TM NBART Collection 3 **product. **Image B** is the false colour composite ['nbart_nir', 'nbart_red', 'nbart_green'] displayed as [Red, Green, Blue] from the **GA Landsat 5 TM NBAR Collection 3 **product. -![CD 2](/_files/cmi/figure_CD_new_2.JPG) +![CD 2](/_media/cmi/figure_CD_new_2.JPG) **Image C** is another **GA Landsat 5 TM NBART Collection 3** false colour composite, but uses a different combination of spectral bands ['nbart_swir_2', 'nbart_nir', 'nbart_blue'] displayed as [Red, Green, Blue]. **Image D** is the relative slope dataset. -![E 2](/_files/cmi/figure_E_new_2.JPG) +![E 2](/_media/cmi/figure_E_new_2.JPG) **Image E** is the Fmask classification result from the **GA Landsat 5 TM NBART Collection 3** product. The colours for the Fmask classification are displayed as: @@ -63,7 +63,7 @@ The Data Cube query produces the following images: - Cyan = snow - Dark blue = water -![FG 1](/_files/cmi/figure_FG_new_0.JPG) +![FG 1](/_media/cmi/figure_FG_new_0.JPG) **Images F and G** represent the **GA Landsat 5TM NBART Collection 3** false colour composite, with pre- and post-application of the contiguity mask, respectively. @@ -94,7 +94,7 @@ data = dc.load( The Data Cube query produces the following image, which is the false colour composite ['nbar_nir', 'nbar_red', 'nbar_green'] displayed as [Red, Green, Blue]. -![nbar new](/_files/cmi/nbar_new.JPG) +![nbar new](/_media/cmi/nbar_new.JPG) ## Example 3 – NBART product @@ -121,7 +121,7 @@ data = dc.load( The Data Cube query produces the following images: -![nbart new](/_files/cmi/nbart_new.JPG) +![nbart new](/_media/cmi/nbart_new.JPG) **Image A** is the false colour composite ['nbart_nir', 'nbart_red', 'nbart_green'] displayed as [Red, Green, Blue]. @@ -198,7 +198,7 @@ The fields are defined as follows: ### Flow process for determining the label (nrt, interim or final) -![logic max](/_files/cmi/nrt-interim-final-logic.png) +![logic max](/_media/cmi/nrt-interim-final-logic.png) ### Example files diff --git a/docs/guides/reference/ard-expanded-processing-extent.md b/docs/guides/reference/ard-expanded-processing-extent.md index e9a6f84ec..8f2189c36 100644 --- a/docs/guides/reference/ard-expanded-processing-extent.md +++ b/docs/guides/reference/ard-expanded-processing-extent.md @@ -25,13 +25,13 @@ Surface reflectance products over Australian offshore territories differ in qual The full list of locations, including the additional locations, is shown in the following maps and table. -:::{figure} /_files/ard-expanded-processing-extent/extent_ls.png +:::{figure} /_media/ard-expanded-processing-extent/extent_ls.png :alt: A map of Australia and surrounding areas annotated with rectangles to indicate the locations of additional Landsat scenes. The locations of the Landsat scenes. ::: -:::{figure} /_files/ard-expanded-processing-extent/extent_s2.png +:::{figure} /_media/ard-expanded-processing-extent/extent_s2.png :alt: A map of Australia and surrounding areas annotated with rectangles to indicate the locations of additional Sentinel-2 scenes. The locations of the Sentinel-2 tiles. @@ -102,7 +102,7 @@ This update features the addition of Landsat scenes and Sentinel 2 tiles over is The following map represents the density of USGS Level 1 L1TP scenes over the extended area. These scenes are used as input for Landsat ARD generation and represent higher geometric accuracy as ground control points and a digital elevation model is incorporated into ortho-processing. Locations with L1TP Level 1 inputs are scenes that contain islands, land or reef features that can be used as a control. Locations entirely over shallow Ocean have been added for bathymetric purposes and have low geometric accuracy. -:::{figure} /_files/ard-expanded-processing-extent/LS5_7_8_9_L1TP_Density_and_Coverage.png +:::{figure} /_media/ard-expanded-processing-extent/LS5_7_8_9_L1TP_Density_and_Coverage.png :alt: A map of Australia and surrounding areas annotated with rectangles representing density and coverage. Landsat 5, 7, 8, and 9 L1TP Density and Coverage diff --git a/docs/guides/reference/collection_3_naming.rst b/docs/guides/reference/collection_3_naming.rst index 149fbe6d0..c55e46e74 100644 --- a/docs/guides/reference/collection_3_naming.rst +++ b/docs/guides/reference/collection_3_naming.rst @@ -121,10 +121,10 @@ References System `__ - `DEA Summary Product Grid (Collection 3) `__ -.. |ard_ls_image| image:: /_files/reference/ARD_Landsat_Filename.svg -.. |ard_s2_image| image:: /_files/reference/ARD_S-2_Filename.svg -.. |fc_ls_image| image:: /_files/reference/Landsat_Fractional_Cover.svg -.. |wo_s2_image| image:: /_files/reference/S-2_Water_Observations.svg -.. |summary_image| image:: /_files/reference/Derivative_Summary_Product.svg -.. |odc_ard_image| image:: /_files/reference/ODC_Product_ID_LS_ARD.svg -.. |odc_fc_image| image:: /_files/reference/ODC_Product_ID_LS_FC.svg +.. |ard_ls_image| image:: /_media/reference/ARD_Landsat_Filename.svg +.. |ard_s2_image| image:: /_media/reference/ARD_S-2_Filename.svg +.. |fc_ls_image| image:: /_media/reference/Landsat_Fractional_Cover.svg +.. |wo_s2_image| image:: /_media/reference/S-2_Water_Observations.svg +.. |summary_image| image:: /_media/reference/Derivative_Summary_Product.svg +.. |odc_ard_image| image:: /_media/reference/ODC_Product_ID_LS_ARD.svg +.. |odc_fc_image| image:: /_media/reference/ODC_Product_ID_LS_FC.svg diff --git a/docs/guides/reference/collection_3_summary_grid.md b/docs/guides/reference/collection_3_summary_grid.md index efc955adc..530af23a7 100644 --- a/docs/guides/reference/collection_3_summary_grid.md +++ b/docs/guides/reference/collection_3_summary_grid.md @@ -70,7 +70,7 @@ The extent of this grid is based upon the maximal extents of: Shown here is an image of the new grid in EPSG:3577 projection, with tiles shown where we expect to have land imagery available: -![](/_files/reference/collection_3_grid.jpeg) +![](/_media/reference/collection_3_grid.jpeg) ## How can I use this grid? diff --git a/docs/guides/reference/dataset_maturity_guide.md b/docs/guides/reference/dataset_maturity_guide.md index 5843f3985..3bbf81c36 100644 --- a/docs/guides/reference/dataset_maturity_guide.md +++ b/docs/guides/reference/dataset_maturity_guide.md @@ -66,7 +66,7 @@ in the product metadata and as part of the filename, enabling users to choose an maturity level to suit their requirements. Datasets with lower maturity level will be replaced by more mature dataset versions (interim and final) as they are generated. -![dataset_maturity_flowchart](/_files/reference/dataset_maturity_flowchart.drawio.svg) +![dataset_maturity_flowchart](/_media/reference/dataset_maturity_flowchart.drawio.svg) **Tip:** to view larger, right-click then select **open image in new tab** diff --git a/docs/guides/setup/NCI/account.rst b/docs/guides/setup/NCI/account.rst index 22289b4b0..7bb24deac 100644 --- a/docs/guides/setup/NCI/account.rst +++ b/docs/guides/setup/NCI/account.rst @@ -5,7 +5,7 @@ Account Registration ====================== -.. image:: /_files/nci/nci_user_registration.png +.. image:: /_media/nci/nci_user_registration.png :alt: description :align: right :scale: 20% diff --git a/docs/guides/setup/NCI/basics.rst b/docs/guides/setup/NCI/basics.rst index a3e40eb01..69cc1d9a0 100644 --- a/docs/guides/setup/NCI/basics.rst +++ b/docs/guides/setup/NCI/basics.rst @@ -61,7 +61,7 @@ files required to set up Datacube. Type `gdata/v10` into the :guilabel:`Storage` box, then use the dropdown to select other projects containing data you wish to access. See :ref:`nci_data_access`. -.. figure:: /_files/nci/are_highlight_v10_storage_setting.png +.. figure:: /_media/nci/are_highlight_v10_storage_setting.png **DEA Environment** diff --git a/docs/guides/setup/Sandbox/sandbox.rst b/docs/guides/setup/Sandbox/sandbox.rst index db31bae6c..7ac685ec8 100644 --- a/docs/guides/setup/Sandbox/sandbox.rst +++ b/docs/guides/setup/Sandbox/sandbox.rst @@ -31,7 +31,7 @@ The DEA Sandbox is free to use. Visit https://app.sandbox.dea.ga.gov.au to sign for a new account, or sign in if you have an existing account. A verification code will be sent to the email address you register with. -.. image:: /_files/sandbox/sandbox_signup.jpg +.. image:: /_media/sandbox/sandbox_signup.jpg :align: center :alt: Sandbox register @@ -50,7 +50,7 @@ left sidebar (containing a file browser and other useful features), and a menu bar along the top. The main work area is where Jupyter notebooks will be displayed once opened. By default, the Launcher is displayed, which allows you to create new files. -.. image:: /_files/sandbox/sandbox-jupyterlab-startup.png +.. image:: /_media/sandbox/sandbox-jupyterlab-startup.png :align: center :alt: JupyterLab Start Up diff --git a/docs/guides/setup/dea_maps.md b/docs/guides/setup/dea_maps.md index 29851912b..054e9875d 100644 --- a/docs/guides/setup/dea_maps.md +++ b/docs/guides/setup/dea_maps.md @@ -23,7 +23,7 @@ Let's add a dataset to the map so that we can view the data. Here's an [example 1. In the data catalogue, navigate through the folders to find the dataset that you want to access then add it to the map. E.g. click **Baseline satellite data** > **DEA Surface Reflectance (Sentinel-2)** > **DEA Surface Reflectance (Sentinel-2A MSI)** > **Add to the map**. 1. The dataset will be added as a card to the left sidebar and you may now see data overlaid on the map. But **if you don't see any data or data doesn't cover a location**, continue to the next section: **Filter by location**. - ![Adding data](/_files/dea-maps/dea_maps_5.jpg) + ![Adding data](/_media/dea-maps/dea_maps_5.jpg) @@ -38,7 +38,7 @@ After adding data to the map, if you don't see any data or the data doesn't cove 1. Data should now be overlaid on that location. The left sidebar will indicate that the filter has been applied. 1. Next, you can either select **Remove filter** or **New location**. - ![Filtering](/_files/dea-maps/dea_maps_6.jpg) + ![Filtering](/_media/dea-maps/dea_maps_6.jpg) ## Share a URL and save your map @@ -48,7 +48,7 @@ Once you've created a map by adding datasets, adjusting map settings, and zoomin 1. Click **Copy** to copy this custom URL to your clipboard. 1. Anyone who opens this URL will see your map exactly as you configured it. You can send this URL to others, link to it from a public website, or bookmark it for later. -![Share URL](/_files/dea-maps/share-url.jpg) +![Share URL](/_media/dea-maps/share-url.jpg) ## Switch styles (bands and layers) @@ -56,13 +56,13 @@ Most datasets contain multiple 'bands' or 'layers' of data that reveal different For example, the 'DEA Surface Reflectance (Sentinel-2)' dataset can be switched to the 'False colour - Green, SWIR, NIR' style. This style uses wavelengths of light beyond the visible spectrum ('near infrared' and 'short-wave infrared') to highlight waterbodies, vegetation, and other features more distinctly. -![False colour](/_files/dea-maps/dea_maps_styles_2.jpg) +![False colour](/_media/dea-maps/dea_maps_styles_2.jpg) ## Compare side-by-side There is a **Compare** feature that lets you view two different map configurations side-by-side. This allows you to compare two different datasets or the same dataset at two different times. Here's an [example map of DEA High Tide Imagery versus DEA Low Tide Imagery](https://maps.dea.ga.gov.au/#share=s-7YeWZKqWkF0Ctv5Av8RkHSWeNzQ). -1. In the left sidebar, click the ![Button](/_files/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Compare**. +1. In the left sidebar, click the ![Button](/_media/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Compare**. 1. The map will now be split into two halves. In the sidebar, the dataset's card will be split into two separate cards: one labelled 'Left' and the other 'Right'. 1. You can configure each side of the map independently. E.g. you can change the 'Styles' value on the right side. 1. Each dataset can be assigned to either the **Left** or **Right** side or **Both** by selecting the relevant option in the left sidebar. @@ -71,13 +71,13 @@ There is a **Compare** feature that lets you view two different map configuratio Note that you can share a URL of your comparison by using the **Share / Print** feature. -![Screen splitter](/_files/dea-maps/dea_maps_compare_2.jpg) +![Screen splitter](/_media/dea-maps/dea_maps_compare_2.jpg) ## Difference tool The **Difference** tool allows you to visualise the changes in a dataset over time. Here is an [example map showing locations that have gotten wetter or dryer over time](https://maps.dea.ga.gov.au/#share=s-oAolm6NEW2vSCtXGJMUmPnIAUx2). -1. In the left sidebar, click the ![Button](/_files/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Difference**. +1. In the left sidebar, click the ![Button](/_media/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Difference**. 1. The difference tool will appear, replacing the left sidebar. 1. Select a location on the map to analyse by clicking anywhere on the map. 1. Under **Data Comparison A** and **Date Comparison B**, choose the two dates to compare. For best results, choose dates that don't have cloud cover. @@ -86,17 +86,17 @@ The **Difference** tool allows you to visualise the changes in a dataset over ti 1. The difference will be shown on the map as a new dataset. For instance, the 'Modified Normalised Difference Water Index - Green, SWIR' shows locations that have gotten wetter over time in blue while locations that have gotten dryer are red. 1. To reopen the left sidebar, click **Show workbench**, and to close the difference tool, click **Exit**. You'll notice that in the left sidebar, the difference has been added as a dataset. -![Difference](/_files/dea-maps/dea_maps_diff_2.jpg) +![Difference](/_media/dea-maps/dea_maps_diff_2.jpg) ## Export data as high-resolution TIFF It's possible to export small areas of DEA data in the high-resolution TIFF image format. This exported data can used in GIS applications like QGIS and ArcGIS. (But for exporting larger volumes of data, you can use the [DEA Sandbox](/guides/setup/Sandbox/sandbox/) or [NCI](/guides/setup/NCI/README/) environments or download directly from the [DEA Public Data S3 Bucket](https://data.dea.ga.gov.au/).) -1. In the left sidebar, click the ![Button](/_files/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Export**. +1. In the left sidebar, click the ![Button](/_media/dea-maps/show-more-actions-button.jpg) button ('Show more actions') on a dataset that you have added to the map > click **Export**. 1. Click two locations on the map to draw a rectangle. 1. Click **Download extent** then wait for the TIFF file to be downloaded to your computer. (If the export fails, try zooming in and drawing a rectangle that covers a smaller land area.) -![Export](/_files/dea-maps/dea_maps_export_2.jpg) +![Export](/_media/dea-maps/dea_maps_export_2.jpg) ## Navigate time and location @@ -106,7 +106,7 @@ You can navigate through datasets across a range of times and locations. * Zoom in and out of the map by scrolling the mouse, or use the "**+**" and "**-**" buttons. * Move to a different location by dragging with the mouse, or use the **Search for locations** bar. E.g. search for 'Lake Eyre', then click 'Lake Eyre, SA' to jump straight to this location. -![Changing time](/_files/dea-maps/dea_maps_7.jpg) +![Changing time](/_media/dea-maps/dea_maps_7.jpg) ## Watercourse Discharge @@ -115,15 +115,15 @@ The [Bureau of Meteorology](http://www.bom.gov.au/) provides water discharge dat 1. Add a dataset to your map, e.g. 'DEA Surface Reflectance (Sentinel-2A MSI)'. 1. Add the Watercourse Discharge dataset to your map: **Explore map data** > **Other** > **Water Regulations Data (BoM)** > **Hydrologic Reference Stations** > **Watercourse Discharge** > **Add to the map**. The Hydrological Reference Stations will be plotted on the map. These are the locations where watercourse discharge is measured by the Bureau of Meteorology. - ![Watercourse Discharge Tool map](/_files/dea-maps/dea_maps_wdt_2.jpg) + ![Watercourse Discharge Tool map](/_media/dea-maps/dea_maps_wdt_2.jpg) 1. Zoom in and click on one of these stations. A 'Feature Information' popup will provide details about the station. 1. In the popup, click **Show <dataset> at this location**, e.g. 'Show DEA Surface Reflectance (Sentinel-2A MSI) at this location'. 1. In the popup, click **Expand** to expand the hydrograph of this particular station, then click **×** to close the popup. You can hover your mouse over the hydrograph to view the average watercourse discharge value for each date. -1. To add your chosen dataset to the hydrograph, in the left sidebar, on the dataset's card, click the ![Button](/_files/dea-maps/show-available-times-on-chart-button.jpg) button ('Show available times on chart'). +1. To add your chosen dataset to the hydrograph, in the left sidebar, on the dataset's card, click the ![Button](/_media/dea-maps/show-available-times-on-chart-button.jpg) button ('Show available times on chart'). 1. Each capture in your chosen dataset will display as a dot on the hydrograph. To view the dots more clearly, you can zoom in on the hydrograph by scrolling your mouse. Click on a dot to jump to the particular time and location of the capture on the map. - ![Watercourse Discharge Tool hydrograph](/_files/dea-maps/dea_maps_wdt_5.jpg) + ![Watercourse Discharge Tool hydrograph](/_media/dea-maps/dea_maps_wdt_5.jpg) ## Additional features diff --git a/docs/guides/setup/explorer_guide.rst b/docs/guides/setup/explorer_guide.rst index 2b335a95f..ec6008fd1 100644 --- a/docs/guides/setup/explorer_guide.rst +++ b/docs/guides/setup/explorer_guide.rst @@ -31,7 +31,7 @@ Open the DEA Metadata Explorer ------------------------------ Open https://explorer.dea.ga.gov.au/. This will display the Metadata Explorer user interface. -.. image:: /_files/DEA_explorer/DEA_explorer_interface_annotated.png +.. image:: /_media/DEA_explorer/DEA_explorer_interface_annotated.png :align: center :alt: DEA Explorer interface @@ -47,35 +47,35 @@ Select the Landsat 9 Analysis Ready product ------------------------------------------- 1. Click the **product selection** bar to open the dropdown menu. Select **ga_ls9c_ard_3**. This selects the Landsat 9 product. -.. image:: /_files/DEA_explorer/DEA_explorer_select_product.png +.. image:: /_media/DEA_explorer/DEA_explorer_select_product.png :align: center :alt: DEA Explorer product selection 2. Click the **time** bar to open the dropdown menu. Select **2022**. This will show all Landsat 9 datasets for 2022. -.. image:: /_files/DEA_explorer/DEA_explorer_select_year.png +.. image:: /_media/DEA_explorer/DEA_explorer_select_year.png :align: center :alt: DEA Explorer year selection 3. Click the **all months** bar to open the dropdown menu. Select **August**. This will show all the Landsat 9 datasets for August 2022. -.. image:: /_files/DEA_explorer/DEA_explorer_select_month.png +.. image:: /_media/DEA_explorer/DEA_explorer_select_month.png :align: center :alt: DEA Explorer month selection 4. Click the **all days** bar to open the dropdown menu. Select **11th**. This will show all the Landsat 9 datasets for 11 August 2022. -.. image:: /_files/DEA_explorer/DEA_explorer_select_day.png +.. image:: /_media/DEA_explorer/DEA_explorer_select_day.png :align: center :alt: DEA Explorer day selection 5. The **map display** will now show all the Landsat 9 datasets for 11 August 2022 as blue shaded boxes. Use the **+** button on the map to zoom in, and click and drag to pan the map. -.. image:: /_files/DEA_explorer/DEA_explorer_available_data.png +.. image:: /_media/DEA_explorer/DEA_explorer_available_data.png :align: center :alt: DEA Explorer available data @@ -87,7 +87,7 @@ Zoom in on Adelaide Use the map's **+** button to zoom in on Adelaide. -.. image:: /_files/DEA_explorer/DEA_explorer_Adelaide.png +.. image:: /_media/DEA_explorer/DEA_explorer_Adelaide.png :align: center :alt: DEA Explorer zoom in on Adelaide @@ -95,7 +95,7 @@ Use the map's **+** button to zoom in on Adelaide. When we hover over Adelaide, we can see there there is one dataset for Adelaide for the 11 August 2022. Click on the dataset on the map. We can now see a preview of the data for that tile, as well as all the metadata associated with that dataset below the map viewer. -.. image:: /_files/DEA_explorer/DEA_explorer_dataset_metadata.png +.. image:: /_media/DEA_explorer/DEA_explorer_dataset_metadata.png :align: center :alt: DEA Explorer Adelaide dataset with metadata diff --git a/docs/guides/setup/gis/web_coverage_service.md b/docs/guides/setup/gis/web_coverage_service.md index 95ee913e4..6a3e56f3c 100644 --- a/docs/guides/setup/gis/web_coverage_service.md +++ b/docs/guides/setup/gis/web_coverage_service.md @@ -16,7 +16,7 @@ This tutorial shows how to create a Web Coverage Service connection using QGIS. 2. On the Menu Bar click on **Layer**. 3. A sub-menu tab will show below Layer; click on **Add Layer**, choose **Add WCS Layer**. -![QGIS - Add WCS](/_files/web-services/ows_tutorial_5.png) +![QGIS - Add WCS](/_media/web-services/ows_tutorial_5.png) 4. Click on the **New** button. 5. A dialogue will open, as shown below: Provide the following details, these can be found at the URL [https://ows.dea.ga.gov.au/](https://ows.dea.ga.gov.au/). @@ -25,14 +25,14 @@ This tutorial shows how to create a Web Coverage Service connection using QGIS. `URL: https://ows.dea.ga.gov.au/?service=WMS&version=1.3.0&request=GetCapabilities` -![QGIS - WCS Connection](/_files/web-services/ows_tutorial_6.png) +![QGIS - WCS Connection](/_media/web-services/ows_tutorial_6.png) 6. After providing the details above, click on **OK**. 7. The previous dialogue will show up, in the dropdown above the New button, you will see DEA Services, if it is not there click the dropdown button below and select it. 8. The **Connect** button will be activated, click on it to load the layers. Anytime this page is open, because the connection has already been established, click on the **Connect** button to load the data. 9. The layer will be loaded as shown below in the dialogue. -![QGIS - Loaded WCS](/_files/web-services/ows_tutorial_4.png) +![QGIS - Loaded WCS](/_media/web-services/ows_tutorial_4.png) 10. Navigate through layers and choose the layer you will need to display on the Map Page. With WCS you can select Time and Format of Image. 11. After selecting the layer click on the **Add** button at the bottom of the dialogue. \ No newline at end of file diff --git a/docs/guides/setup/gis/web_map_service.md b/docs/guides/setup/gis/web_map_service.md index de36e8c52..1e991e420 100644 --- a/docs/guides/setup/gis/web_map_service.md +++ b/docs/guides/setup/gis/web_map_service.md @@ -20,11 +20,11 @@ Although this tutorial focuses on QGIS, the same process can be used to connect 2. On the Menu Bar click on **Layer**. 3. A sub-menu tab will show below Layer; click on **Add Layer**, choose **Add WMS/WMTS Layer**. -![QGIS - Add Layer](/_files/web-services/ows_tutorial_1.png) +![QGIS - Add Layer](/_media/web-services/ows_tutorial_1.png) 4. A dialogue will open as shown below. Click on the **New** button. -![QGIS - New Layer](/_files/web-services/ows_tutorial_2.png) +![QGIS - New Layer](/_media/web-services/ows_tutorial_2.png) 5. A dialogue will open, as shown below: Provide the following details, these can be found at the URL [https://ows.dea.ga.gov.au/](https://ows.dea.ga.gov.au/). @@ -32,13 +32,13 @@ Although this tutorial focuses on QGIS, the same process can be used to connect `URL: https://ows.dea.ga.gov.au/?service=WMS&version=1.3.0&request=GetCapabilities` -![QGIS - Create New Connection](/_files/web-services/ows_tutorial_3.png) +![QGIS - Create New Connection](/_media/web-services/ows_tutorial_3.png) 6. After providing the details above, click on **OK**. 7. The previous dialogue will show up, in the dropdown above the **New** button, you will see DEA Services. If it is not there click the dropdown button below and select it. 8. The **Connect** button will be activated, click on it to load the layers. Anytime this page is open, because the connection has already been established, click on **Connect** to load the data. -![QGIS - View Connection](/_files/web-services/ows_tutorial_4.png) +![QGIS - View Connection](/_media/web-services/ows_tutorial_4.png) 9. The layer will be loaded as shown below in the dialogue. 10. Navigate through layers and choose the layer you will need to display on the Map Page. diff --git a/docs/guides/setup/validation/daily-summary-reports.md b/docs/guides/setup/validation/daily-summary-reports.md index 6e502958b..ed520467d 100644 --- a/docs/guides/setup/validation/daily-summary-reports.md +++ b/docs/guides/setup/validation/daily-summary-reports.md @@ -69,21 +69,21 @@ The figures provided in this report are as follows. * **Figure 1** — A 2 km $\times$ 2 km box surrounding the field site in true-colour RGB. The approximate location for the field site is indicated by a square in the image. The figure gives an overall view of the surroundings of the field site, including the land cover and whether any of the data may be affected by cloud or cloud shadow. Coordinates are listed in the Australian Albers system. - :::{figure} /_files/validation/Daily_Summary_Report_Figure_1_RGB-2023-07-25.png + :::{figure} /_media/validation/Daily_Summary_Report_Figure_1_RGB-2023-07-25.png :alt: Figure 1 of the Daily validation summary report :figwidth: 450px ::: * **Figure 2** — The summary comparison of surface reflectance for each satellite band. The bands are provided in the same order as in the results table: CA, blue, green, etc. Vertical error bars are shown for the satellite data and field data and these correspond to the Sat rms and Field rms statistics in the results table. - :::{figure} /_files/validation/Daily_Summary_Report_Figure_2_DayComparison-2023-07-25.png + :::{figure} /_media/validation/Daily_Summary_Report_Figure_2_DayComparison-2023-07-25.png :alt: Figure 2 of the Daily validation summary report :figwidth: 450px ::: * **Figure 3** — A comparison between the current data (coloured symbols) versus all previous data for the satellite platform (black dots). The diagonal line represents the one-to-one correspondence between the field data and satellite data. Ideally, all data should cluster around this line. The line of best fit is not displayed, but its statistics are included in the bottom-right of the figure. The line of best fit is calculated from the current plus all previous data for this satellite. A $R^2$ coefficient close to $1$ means a very high degree of correlation between field and satellite data. A slope close to $1$ and intercept close to $0$ together indicate that overall, the satellite and field data match up closely. - :::{figure} /_files/validation/Daily_Summary_Report_Figure_3_OverallComparison-2023-07-25.png + :::{figure} /_media/validation/Daily_Summary_Report_Figure_3_OverallComparison-2023-07-25.png :alt: Figure 3 of the Daily validation summary report :figwidth: 450px ::: diff --git a/docs/operational-reports/_data.yaml b/docs/operational-reports/_data.yaml index 5e17fd6d9..21ce4f000 100644 --- a/docs/operational-reports/_data.yaml +++ b/docs/operational-reports/_data.yaml @@ -7,12 +7,12 @@ reports: - name: Digital Earth Australia Status link: https://status.dea.ga.gov.au/ description: Monitor the status of DEA services in real time. Check if a service is currently online and view historical uptime data. - image: /_files/operational-reports/digital-earth-australia-status.png + image: /_media/operational-reports/digital-earth-australia-status.png custom_link_text: View the Digital Earth Australia Status site - name: DEA Published Product Currency Report link: https://mgmt.sandbox.dea.ga.gov.au/public-dashboards/d22241dbfca54b1fa9f73938ef26e645?orgId=1 description: Currency is a measure of how consistently DEA's data products have been published through DEA in line with the stated update frequency on or before the scheduled publish date. This report tracks the Currency of our data products and if they are on time. - image: /_files/operational-reports/dea-published-product-currency-report.png + image: /_media/operational-reports/dea-published-product-currency-report.png custom_link_text: View the DEA Published Product Currency Report diff --git a/docs/validation/_data.yaml b/docs/validation/_data.yaml index ecd6a67e9..f8749dce0 100644 --- a/docs/validation/_data.yaml +++ b/docs/validation/_data.yaml @@ -4,13 +4,13 @@ description: How well does DEA's satellite-derived Analysis Ready Data compare w cards: - name: Site reports link: ./site-report/ - image: /_files/validation/validation-drone-thumbnail.jpg + image: /_media/validation/validation-drone-thumbnail.jpg - name: Quarterly reports link: ./quarterly-report/ - image: /_files/validation/validation-team-sensor-thumbnail.jpg + image: /_media/validation/validation-team-sensor-thumbnail.jpg - name: Yearly reports link: ./yearly-report/ - image: /_files/validation/validation-drone-flying-thumbnail.png + image: /_media/validation/validation-drone-flying-thumbnail.png - name: Learn more link: /guides/setup/validation/ - image: /_files/validation/user-guides-thumbnail-2.jpg + image: /_media/validation/user-guides-thumbnail-2.jpg