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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effect of seepage on shallow landslides in consideration of changes in topography: Case study including an experimental sandy slope with artificial rainfall
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Effect of seepage on shallow landslides in consideration of changes in topography: Case study including an experimental sandy slope with artificial rainfall

机译:渗流对浅层滑坡考虑地形变化的影响:案例研究,包括具有人工降雨的实验砂坡

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摘要

Many studies on shallow landslides have focused on seepage mechanisms. However, most of these studies assumed that the hillslope was parallel to the seepage direction and force; they did not consider how the seepage was changed by the topography during failure. To investigate the seepage mechanism, particularly the influence of the topographic change during failure, flume experiments using a 30 sandy slope were performed with artificial rainfall. The factor of safety (FS) equation, which considers the seepage direction and force, and the numerical simulation were also applied to analyze the effect of topographic change On the seepage mechanism. The experiments were divided into two stages: rainfall-induced experiment (RIE) and seepage-induced experiment (SIE) with rainfall. In the RIE with a rainfall intensity of 80 mm/h, seepage erosion occurred followed by undercutting, which resulted from seepage erosion, to upward direction of sandy slope. The analysis of FS in RIE are showing an instability when seepage direction is be a slope parallel with theoretical value, i (Hydraulic gradient). In the numerical model, when topographic changes of the surface of the sandy flume were applied, seepage flow concentrated from failure surface of the toe of flume to middle part of flume, which is affected by saturation. In SIE, multiple failures caused by the seepage in the vertically upward direction occurred with a high seepage force, and the failure mass then moved in the downward direction with the seepage flow. FS for SIE showed a high instability than those of RIE when seepage direction with high force already changed from vertically downward seepage flow to increasing slope parallel seepage flow. Applying changed topography (more deep from sandy flume surface) in numerical model is showing concentrated seepage flow at the bottom of failures. This is one of mechanism developing failure mass to downward direction to the toe of flume because soil moisture sensors installed near failures (25 cm-depth) show high value than porosity value, indicating soil mobilization. Therefore, the seepage direction and force play important roles in landslide mechanism, and these factors should be considered in landslide studies.
机译:许多关于浅层滑坡的研究都集中在渗流机制上。然而,这些研究中的大多数假设山坡平行于渗流方向和力;他们没有考虑在失败期间如何改变渗透。为了研究渗流机制,特别是在失败期间的地形变化的影响,使用30个砂坡进行的水槽实验进行人工降雨。考虑渗流方向和力的安全性(FS)等式,以及数值模拟分析了地形变化对渗流机制的影响。该实验分为两个阶段:降雨诱导的实验(RIE)和渗流诱导的实验(SIE)降雨。在RIE有80 mm / h的降雨强度,渗流侵蚀,然后削弱,从渗流侵蚀导致,掩盖砂坡的向上方向。当渗流方向是具有理论值的斜率时,RIE中的FS分析显示不稳定性,I(液压梯度)。在数值模型中,当施加砂浆表面的地形变化时,渗流浓缩从水槽脚趾的失效表面到水槽的中间部分受饱和度的影响。在筛子中,由垂直向上方向引起的多个故障以高渗出力发生,并且失效质量随后在向下方向上移动。当SIE的FS显示高不稳定性,当渗流方向已经从垂直向下的渗流流变为增加斜率并联渗流流量时,高于RIE。在数值模型中施加更换的地形(从沙滩表面深入)显示出故障底部的集中渗流。这是将故障质量到向下方向的机构之一,因为安装在靠近故障(25cm深)的土壤湿度传感器显示出高于孔隙率值的高值,表明土壤动员。因此,渗流方向和力在滑坡机构中发挥重要作用,在滑坡研究中应考虑这些因素。

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