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Assessment and mapping of slope stability based on slope units : a case study in Yan’an, China

机译:基于边坡单元的边坡稳定性评估与制图-以延安市为例

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摘要

Precipitation frequently triggers shallow landslides in the Loess Plateau of Shaanxi, China, resulting in loss of life, damage to gas and oil routes, and destruction of transport infrastructure and farmland. To assess the possibility of shallow landslides at different precipitation levels, a method to draw slope units and steepest slope profiles based on ARCtools and a new method for calculating slope stability are proposed. The methods were implemented in a case study conducted in Yan’an, north-west China. High resolution DEM (Digital Elevation Model) images, soil parameters from in-situ laboratory measurements and maximum depths of precipitation infiltration were used as input parameters in the method. Next, DEM and reverse DEM were employed to map 2146 slope units in the study area, based on which the steepest profiles of the slope units were constructed. Combining analysis of the water content of loess, strength of the sliding surface, its response to precipitation and the infinite slope stability equation, a new equation to calculate infinite slope stability is proposed to assess shallow landslide stability. The slope unit stability was calculated using the equation at 10-, 20-, 50- and 100-year return periods of antecedent effective precipitation. The number of slope units experiencing failure increased in response to increasing effective antecedent rainfall. These results were validated based on the occurrence of landslides in recent decades. Finally, the applicability and limitations of the model are discussed.
机译:降水经常在中国黄土高原引发浅层滑坡,导致生命损失,天然气和石油路线受损以及运输基础设施和农田遭到破坏。为了评估不同降水水平下浅层滑坡的可能性,提出了一种基于ARCtools的边坡单位和最陡坡面图绘制方法以及边坡稳定性计算的新方法。这些方法是在中国西北部的延安进行的案例研究中实施的。该方法使用高分辨率DEM(数字高程模型)图像,现场实验室测量的土壤参数和最大降水入渗深度作为输入参数。接下来,使用DEM和反向DEM在研究区域中绘制2146个坡度单元的地图,在此基础上构造坡度单元的最陡轮廓。结合黄土的含水量,滑动面的强度,其对降水的响应和无限边坡稳定方程的分析,提出了计算无限边坡稳定的新方程式来评价浅层滑坡的稳定性。使用方程式在有效降水的10年,20年,50年和100年回归期计算出坡度单位的稳定性。响应有效降雨增加,经历破坏的斜坡单位数量增加。根据最近几十年发生的滑坡,验证了这些结果。最后,讨论了该模型的适用性和局限性。

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