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A method for evaluating the stability of an unsaturated slope in natural terrain during rainfall

机译:一种天然降雨条件下非饱和边坡稳定性的评估方法

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The stability of an unsaturated slope in natural terrain was evaluated based on the variation in the suction stress in the soil layer induced by rainfall. A field monitoring site where landslides have occurred in the past was selected as the study area. To apply the concept of slope stability analysis considering the suction stress in unsaturated soil, the soil-water characteristic curve (SWCC) and the suction stress characteristic curve (SSCC) of the unsaturated soil obtained from the study area were estimated using the van Genuchten (1980) model and the Lu and Likos (2006) model, respectively. The phenomenon of ground saturation induced by the infiltration of rainfall into unsaturated soil is similar to the wetting path of the SWCC. The curve-fit parameters estimated from the SWCC wetting path were therefore used to determine the matric suction and suction stress in the unsaturated soil. The amount of rainfall and the volumetric water content of the soil were measured using a rain gauge and time-domain reflectometer (TDR) sensors, respectively, at the monitoring site. An infinite slope was chosen as representative of the slope of the natural terrain in the study area because the slope length is very long but the depth of the soil layer over the rock is very shallow. The stability of this unsaturated slope in natural terrain was evaluated based on the safety factor of an infinite slope considering the suction stress in the unsaturated soil layer. The safety factor of the slope suddenly decreased during and just after a rainfall and then recovered. Notably, the safety factor of this natural slope exhibited continuous fluctuations because of changes in the suction stress caused by the evaporation and infiltration of water in the unsaturated soil layer. The variation in the suction stress in unsaturated soil induced by rainfall can be estimated from the results of laboratory tests performed to estimate the wetting process based on the SWCC and SSCC in combination with field monitoring data collected by sensors to measure the volumetric water content or matric suction in the soil. Therefore, the infinite-slope stability of a slope in natural terrain can be evaluated in real time by estimating the suction stress in the unsaturated soil due to rainfall when the volumetric water content or matric suction in the soil is being monitored in the field. (C) 2016 Elsevier B.V. All rights reserved.
机译:根据降雨引起的土壤层中吸力应力的变化,评估了自然地形中非饱和斜坡的稳定性。过去曾发生过滑坡的现场监测地点被选为研究区域。为了应用考虑了非饱和土的吸力的边坡稳定性分析的概念,使用van Genuchten(van Genuchten)估算了研究区域获得的非水土的水-水特征曲线(SWCC)和吸力特征曲线(SSCC)( 1980)模型和Lu and Likos(2006)模型。降雨渗透到非饱和土壤中引起的地面饱和现象类似于SWCC的润湿路径。因此,从SWCC润湿路径估算的曲线拟合参数用于确定非饱和土壤中的基质吸力和吸力。在监测现场分别使用雨量计和时域反射计(TDR)传感器测量土壤的降雨量和体积水含量。选择无穷大的坡度来代表研究区域中自然地形的坡度,因为坡长很长,但是岩石上的土壤层深度很浅。考虑到非饱和土层中的吸力,基于无限边坡的安全系数评估了该非饱和土在自然地形中的稳定性。在降雨期间和降雨之后,斜坡的安全系数突然下降,然后恢复。值得注意的是,由于水在非饱和土层中的蒸发和渗透引起的吸力变化,该自然斜坡的安全系数呈现出连续的波动。降雨引起的非饱和土壤中吸力应力的变化可以通过基于SWCC和SSCC并结合传感器收集的现场监测数据以测量体积水含量或基质的现场监测数据来估算润湿过程的实验室测试结果来估算吸进土壤。因此,当在野外监测土壤中的体积水含量或基质吸力时,通过估算由于降雨造成的非饱和土壤中的吸力,可以实时评估自然地形中的边坡的无限边坡稳定性。 (C)2016 Elsevier B.V.保留所有权利。

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