土工基础 ›› 2025, Vol. 39 ›› Issue (6): 891-897.

• 工程实录 • 上一篇    下一篇

极端降雨条件下高边坡稳定性及支护方案效应研究

贾晋成   

  1. (中国能源建设集团山西省电力勘测设计院有限公司,太原 030001)
  • 收稿日期:2025-11-10 修回日期:2025-11-22 出版日期:2025-12-31 发布日期:2026-01-31
  • 作者简介:贾晋成(1984-),男,高级工程师,研究方向为岩土工程。

Stability of High Slopes and the Effectiveness of Support Schemes under Extreme Rainfall

JIA Jincheng   

  1. (China Energy Engineering Group Shanxi Electric Power Co. Ltd., Taiyuan 030001)
  • Received:2025-11-10 Revised:2025-11-22 Online:2025-12-31 Published:2026-01-31

摘要: 基于有限元法,开展了极端降雨条件下边坡稳定性数值模拟研究,重点探讨了降雨强度与历时对边坡稳定性的影响规律。结果表明:边坡安全系数随降雨强度增大及持续时间延长而显著降低,且在长历时大强度降雨的工况下更易接近临界失稳状态。在此基础上,对降雨入渗前后的临界滑动面和安全系数结果进行分析,结合降雨入渗条件下边坡内部孔隙水压力的响应机制。评估了由预应力锚索与锚杆组成的组合支护体系的加固效应,该支护方案通过预应力作用改善坡体应力状态,使临界滑动面向岩土体深部转移。


关键词: 有限元法, 边坡稳定性, 降雨强度, 边坡工程, 数值模拟P642

Abstract: Based on the finite element method, a numerical simulation study on slope stability under extreme rainfall conditions was carried out with the focus on the influence of rainfall intensity and duration on the slope stability. The results indicate that the slope factor of safety decreases significantly with the increasing rainfall intensity and the prolonged duration. Under long-duration, high-intensity rainfall conditions, the slope is more prone to approaching a critical failure state. On this basis, the critical slip surface and factor of safety before and after rainfall infiltration are analyzed in combination with the response mechanism of pore water pressure within the slope under rainfall infiltration conditions. The reinforcement effect of a combined support system consisting of prestressed ground anchors and rock bolts is evaluated. The results show that this support scheme improves the stress state of the slope through the action of prestress, causing the critical slip surface to move deeper into the rock-soil mass. The research findings can provide a theoretical basis for optimizing support design of slope engineering under similar geological and meteorological conditions.

Key words: Finite Element Method, Slope Stability, Rainfall Intensity, Slope Engineering, Numerical Simulation

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