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β€Ž_pages/about.mdβ€Ž

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<div class='paper-box'><div class='paper-box-image'><div><div class="badge" style="border-radius: 3px; padding: 2px 6px;">JGR: Earth Surface, 2022</div><img src='images/JGR_2022.jpg' alt="sym" width="100%"></div></div>
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[Mechanisms of the Non-Uniform Breach Morphology Evolution of Landslide Dams Composed of Unconsolidated Sediments During Overtopping Failure](https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2022JF006664) **[JGR: Earth Surface, IF5= 4.5]** [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:IjCSPb-OGe4C) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:IjCSPb-OGe4C'></span></strong> πŸ“Š
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[Mechanisms of the Non-Uniform Breach Morphology Evolution of Landslide Dams Composed of Unconsolidated Sediments During Overtopping Failure](https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2022JF006664) <strong>[JGR: Earth Surface, IF5= 4.5]<strong> [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:IjCSPb-OGe4C) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:IjCSPb-OGe4C'></span></strong> πŸ“Š
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Gordon G.D. ZHOU, **XUEQIANG LU***, Yunxu XIE, Kahlil F. E. CUI, and Hui TANG
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[Overtopping Volume of Impulse Waves in Glacier Lakes: Experimental and Numerical Investigation using Rigid Dams](https://www.sciencedirect.com/science/article/pii/S0013795222002484?via%3Dihub) **[Engineering Geology, IF5= 7.9]** [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:W7OEmFMy1HYC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:W7OEmFMy1HYC'></span></strong> πŸ“Š
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[Overtopping Volume of Impulse Waves in Glacier Lakes: Experimental and Numerical Investigation using Rigid Dams](https://www.sciencedirect.com/science/article/pii/S0013795222002484?via%3Dihub) <strong>[Engineering Geology, IF5= 7.9]<strong> [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:W7OEmFMy1HYC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:W7OEmFMy1HYC'></span></strong> πŸ“Š
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**XUEQIANG LU**, Gordon G.D. ZHOU*, Kahlil F. E. CUI, Hui TANG, and Yunxu XIE
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Kahlil F. E. Cui, Gordon G.D. ZHOU*., ..., **XUEQIANG LU** and Tao Zhao. (2025). Modeling the Dense Granular Flow Rheology of Particles With Different Surface Friction: Implications for Geophysical Mass Flows. Journal of Geophysical Research: Earth Surface, 130, e2024JF008048. <strong>[IF5= 4.5]</strong><br> [https://doi.org/10.1029/2024JF008048](https://doi.org/10.1029/2024JF008048) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:roLk4NBRz8UC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:roLk4NBRz8UC'></span></strong> πŸ“Š
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">Eng. Geol. 2025</span>
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Hongwei Luo, Gordon G.D. ZHOU*., **XUEQIANG LU**., ..., and Alessandro Pasuto. (2025). Experimental investigation on the formation and failure of landslide dams considering the landslide mobility and river flow. Engineering Geology, 346, 107873. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2024.107873](https://doi.org/10.1016/j.enggeo.2024.107873) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:LkGwnXOMwfcC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:LkGwnXOMwfcC'></span></strong> πŸ“Š
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Hongwei Luo, Gordon G.D. ZHOU*., **XUEQIANG LU**., ..., and Alessandro Pasuto. (2025). Experimental investigation on the formation and failure of landslide dams considering the landslide mobility and river flow. Engineering Geology, 346, 107873. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2024.107873](https://doi.org/10.1016/j.enggeo.2024.107873) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:LkGwnXOMwfcC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:LkGwnXOMwfcC'></span></strong> πŸ“Š
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">Eng. Geol. 2022</span>
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Gordon G.D. ZHOU., Shuai Li*., **XUEQIANG LU** and Hui Tang. (2022). Large-scale landslide dam breach experiments: Overtopping and β€œovertopping and seepage” failures. Engineering Geology, 304, 106680. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2022.106680](https://doi.org/10.1016/j.enggeo.2022.106680) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:Tyk-4Ss8FVUC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:Tyk-4Ss8FVUC'></span></strong> πŸ“Š
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Gordon G.D. ZHOU., Shuai Li*., **XUEQIANG LU** and Hui Tang. (2022). Large-scale landslide dam breach experiments: Overtopping and β€œovertopping and seepage” failures. Engineering Geology, 304, 106680. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2022.106680](https://doi.org/10.1016/j.enggeo.2022.106680) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:Tyk-4Ss8FVUC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:Tyk-4Ss8FVUC'></span></strong> πŸ“Š
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">Eng. Geol. 2022</span>
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Yunxu Xie., Gordon G.D. ZHOU*., Kahlil F.E. Cui and **XUEQIANG LU** (2022). Numerical investigation of debris flows using a two-phase continuum model incorporating a visco-inertial rheology. Engineering Geology, 308, 106797. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2022.106797](https://doi.org/10.1016/j.enggeo.2022.106797) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:Y0pCki6q_DkC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:Y0pCki6q_DkC'></span></strong> πŸ“Š
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Yunxu Xie., Gordon G.D. ZHOU*., Kahlil F.E. Cui and **XUEQIANG LU** (2022). Numerical investigation of debris flows using a two-phase continuum model incorporating a visco-inertial rheology. Engineering Geology, 308, 106797. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2022.106797](https://doi.org/10.1016/j.enggeo.2022.106797) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:Y0pCki6q_DkC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:Y0pCki6q_DkC'></span></strong> πŸ“Š
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">Eng. Geol. 2021</span>
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Dongri Song., Xiaoqing Chen*., Gordon G.D. ZHOU., **XUEQIANG LU**., ..., and Qian Chen. (2021). Impact dynamics of debris flow against rigid obstacle in laboratory experiments. Engineering Geology, 291, 106211. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2021.106211](https://doi.org/10.1016/j.enggeo.2021.106211) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:YsMSGLbcyi4C) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:YsMSGLbcyi4C'></span></strong> πŸ“Š
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Dongri Song., Xiaoqing Chen*., Gordon G.D. ZHOU., **XUEQIANG LU**., ..., and Qian Chen. (2021). Impact dynamics of debris flow against rigid obstacle in laboratory experiments. Engineering Geology, 291, 106211. <strong>[IF5= 7.9]</strong><br> [https://doi.org/10.1016/j.enggeo.2021.106211](https://doi.org/10.1016/j.enggeo.2021.106211) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:YsMSGLbcyi4C) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:YsMSGLbcyi4C'></span></strong> πŸ“Š
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">J. Mt. Sci. 2019</span>
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Mingjun Zhou., Gordon G.D. ZHOU*., Kahlil F.E. Cui., ..., and **XUEQIANG LU**. (2019). Influence of inflow discharge and bed erodibility on outburst flood of landslide dam. Journal of Mountain Science, 16(4), 778–792. <strong>[IF5= 2.7]</strong><br> [https://doi.org/10.1007/s11629-018-5312-8](https://doi.org/10.1007/s11629-018-5312-8) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:zYLM7Y9cAGgC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:zYLM7Y9cAGgC'></span></strong> πŸ“Š
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Mingjun Zhou., Gordon G.D. ZHOU*., Kahlil F.E. Cui., ..., and **XUEQIANG LU**. (2019). Influence of inflow discharge and bed erodibility on outburst flood of landslide dam. Journal of Mountain Science, 16(4), 778–792. <strong>[IF5= 2.7]</strong><br> [https://doi.org/10.1007/s11629-018-5312-8](https://doi.org/10.1007/s11629-018-5312-8) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:zYLM7Y9cAGgC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:zYLM7Y9cAGgC'></span></strong> πŸ“Š
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# πŸ‘¨πŸ»β€πŸ« Conference Papers
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- <span style="background-color: #133599; color: white; padding: 2px 6px; border-radius: 3px; margin-right: 1px; font-size: 12px;">DFHM8</span>
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Kahlil F.E. Cui., Gordon G.D. ZHOU*., ..., and **XUEQIANG LU**. (2023). Particle size segregation and diffusion in saturated granular flows: Implications for grain sorting in debris flows. In E3S Web of Conferences (Vol. 415, p. 01003). EDP Sciences.
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[https://doi.org/10.1051/e3sconf/202341501003](https://doi.org/10.1051/e3sconf/202341501003) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:_FxGoFyzp5QC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:_FxGoFyzp5QC'></span></strong> πŸ“Š
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[https://doi.org/10.1051/e3sconf/202341501003](https://doi.org/10.1051/e3sconf/202341501003) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:_FxGoFyzp5QC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:_FxGoFyzp5QC'></span></strong> πŸ“Š
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Gordon G.D. ZHOU., Kahlil F.E. Cui*., ..., **XUEQIANG LU** and Yunxu Xie. (2023). Keynote lecture. Impact dynamics of debris flow against slit dam: Experimental and numerical investigation. In E3S Web of Conferences (Vol. 415, p. 06022). EDP Sciences.
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[https://doi.org/10.1051/e3sconf/202341506022](https://doi.org/10.1051/e3sconf/202341506022) πŸ‘‰ [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:ufrVoPGSRksC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:ufrVoPGSRksC'></span></strong> πŸ“Š
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[https://doi.org/10.1051/e3sconf/202341506022](https://doi.org/10.1051/e3sconf/202341506022) [[Google Scholar]](https://scholar.google.com/citations?view_op=view_citation&hl=en&user=Bg80K9YAAAAJ&citation_for_view=Bg80K9YAAAAJ:ufrVoPGSRksC) <strong><span class='show_paper_citations' data='Bg80K9YAAAAJ:ufrVoPGSRksC'></span></strong> πŸ“Š
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