A Two-Phase Two-Point MPM Framework for Large Deformation Modelling of Unsaturated Soils
编号:149 访问权限:仅限参会人 更新:2026-07-30 16:51:13 浏览:3次 特邀报告

报告开始:2026年08月11日 15:25(Asia/Hong_Kong)

报告时间:15min

所在会场:[S10] Session 10 Numerical Applications for Geo-disaster Assessment [S10] Session 10 Day 3

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摘要
This study presents a novel two-phase, two-point hydro-mechanical coupled Material Point Method (MPM) framework to simulate the full-process, infiltration-induced failure of unsaturated soil slopes. By incorporating a dual-layer material point scheme, moisture-dependent yield stress, void ratio-dependent hydraulic function, and shear-induced strain-softening laws, the framework effectively captures solid-fluid interaction and progressive softening of metastable soil structures. The proposed method is validated against element tests and physical model tests, and subsequently applied to two representative case studies: rainfall-triggered failure in a loose-fill slope (1976 Sau Mau Ping landslide) and irrigation-induced collapse in a loess slope (2015 Jiaojiayan South landslide). Numerical results demonstrate the capability of the developed code in capturing suction loss, excess pore water pressure generation, and the transition from local failure to long-runout flowsliding. The case studies reveal that strain softening plays a critical role in controlling shear band localization and runout dynamics in both metastable slopes. This advanced numerical tool provides enhanced predictive capability for unsaturated slope hazard assessment.
关键词
landslides;Partial saturation;Numerical modelling;Hydro-mechanical coupling;Runout
报告人
Zhiqi ZHAN
The Hong Kong Polytechnic University

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重要日期
  • 会议日期

    08月09日

    2026

    08月13日

    2026

  • 08月09日 2026

    初稿截稿日期

  • 08月12日 2026

    注册截止日期

主办单位
International Consortium on Geo-disaster Reduction (ICGdR)
UNESCO Chair on Geoenvironmental Disaster Reduction
承办单位
The Hong Kong Polytechnic University
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