基于土壤水分变化监测的黄土高填方斜坡稳定性

Pub Date : 2023-08-01 DOI:10.1016/j.rcar.2023.10.001
XueLing Yong , Yu Zhang , YunLong Hou , BingBing Han , Ning An , Hui Zhang , Ying Ma
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引用次数: 0

摘要

本文以兰州市某黄土高填方边坡为例,评估降雨过程中含水量变化对黄土高填方边坡稳定性的影响。首先,根据边坡在线监测系统采集的含水率监测数据,对不同含水率的土样进行直接剪切试验,确定剪切强度参数与含水率之间的关系。接着,建立了土壤剪切强度与含水量相关的水力机械耦合模型,并利用该模型分析了两种情况下不同降雨强度和降雨持续时间的 16 种工况:现场勘探报告中的剪切强度参数和本研究中的剪切强度参数。最后,比较了两种情况下降雨渗透后应力和位移的变化结果,以分析含水量对黄土高填方边坡稳定性的影响。结论如下(1) 建立了不同含水量黄土的内聚力和内摩擦角的分段关系式。(2)在不同降雨强度条件下,边坡应力和位移变化趋势存在显著差异。(3)边坡位移发生在距坡顶约 12.5 米范围内的浅土层,塑性应变集中在距坡顶约 6 米范围内的土层。 4)基于含水率监测数据的边坡稳定性分析结果与观测结果较为吻合。
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Stability of loess high-fill slope based on monitored soil moisture changes

This paper aims to assess the influence of moisture content changes during rainfall on the stability of loess high-fill slopes by taking a loess high-fill slope in Lanzhou City as an example. First, according to the moisture content monitoring data collected from a slope online monitoring system, direct shear tests were performed on soil samples of different moisture content to determine the relationship between the shear strength parameters and moisture content. Next, a coupled hydro-mechanical model with soil shear strength related to moisture content was established and used to analyze 16 working conditions with various rainfall intensities and durations for two cases: shear strength parameters from the site exploration report and those from this study. Finally, the results from the two cases were compared regarding the changes in stresses and displacements after rainfall infiltration to analyze the influence of moisture content on the stability of loess high-fill slopes. The conclusions are as follows: (1) Segmental relationship equations of cohesion and angle of internal friction were established for loess with various moisture content. (2) Under the conditions of different rainfall intensities, significant differences were observed in the trends of slope stress and displacement changes. (3) The slope displacement occurred in the shallow soil layer within about 12.5 m from the slope top, and the plastic strain concentrated in the soil layer within about 6 m from the slope top. (4) The results of slope stability analyses based on moisture content monitoring data are more in line with the observed.

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