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Shallow slope stability evolution during rainwater infiltration considering soil cracking state

机译:考虑土壤开裂状态的雨水入渗过程中浅层边坡稳定性演化

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摘要

Cracks in a shallow slope will increase soil infiltration capacity and sequentially affect slope stability. To further understand the evolutionary characteristics of shallow slope stability caused by rainwater infiltration considering desiccation crack extension states, a series of analyses are conducted. The ponding infiltration characteristics of rainwater in a slope at different crack extension states are analyzed based on the Green-Ampt infiltration model. The evolution of slope stability under infiltration considering the crack expansion state is discussed under non-ponding infiltration and ponding infiltration. For the unsaturated infiltration case, an increase in both soil infiltration capacity caused by cracking and rainfall intensity will cause the slope to evolve toward an "unstable" state. The factor of safety (FS) gradually approaches the threshold FS0, which is mainly controlled by soil strength parameters, bulk density, and slope inclination. Under ponding infiltration conditions, the soil cracking degree will affect water migration and further affect slope stability evolution. The crack developmental state and rainfall conditions will affect the slope water saturation state during rainwater infiltration and further affect the evolution characteristics of the factor of safety at different depths.
机译:浅坡的裂缝会增加土壤的渗透能力,并依次影响坡的稳定性。为了进一步了解考虑干燥裂纹扩展状态的雨水入渗引起的浅层边坡稳定性的演化特征,进行了一系列分析。基于Green-Ampt入渗模型,分析了不同裂纹扩展状态下边坡雨水的入渗特征。讨论了考虑无裂纹渗流和深部渗流的考虑裂纹扩展状态的渗流下边坡稳定性的演化。对于非饱和渗透情况,由裂缝引起的土壤渗透能力和降雨强度的增加都会使斜坡向“不稳定”状态发展。安全系数(FS)逐渐接近阈值FS0,该阈值主要由土壤强度参数,堆积密度和坡度控制。在深层入渗条件下,土壤开裂程度将影响水分运移,并进一步影响边坡稳定性演化。裂缝的发育状态和降雨条件将影响雨水入渗过程中的边坡水饱和状态,并进一步影响不同深度安全系数的演变特征。

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