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Evaluation of Slope Stability with Topography and Slope Stability Analysis Method

机译:用地形和边坡稳定性分析方法评估边坡稳定性

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摘要

In existing researches connected with landslide, natural slope was regard as a parallel slope, but it was found that many landslides were occurred on the concave and convex slopes besides parallel slopes. This study was performed to evaluate the effect of shape and length of slope and soil depth for slope stability analysis and to compare infinite slope analysis with circular failure analysis for grid by grid analysis in prediction of GIS-based landslide hazard. As grid size is increased, average slope and curvature were decreased and the decreasing tendency was prominent in mountainous areas. Comparing infinite slope analysis and circular failure analysis for various degree of slope and soil depth, safety factor by infinite slope analysis is larger man that by circular failure analysis. Result showed that the factor safety depends on the shape of slope which is composed of two continuous slopes, if grid size is small (such as 5 m×5 m). So after due consideration for soil depth and topography, proper slope stability analysis must be performed.
机译:在现有的与滑坡有关的研究中,自然坡被认为是平行坡,但是发现除了平行坡以外,在凹凸坡上还发生了许多滑坡。进行这项研究是为了评估边坡的形状和长度以及土层深度对边坡稳定性分析的影响,并将无限边坡分析与网格的圆形破坏分析通过网格分析进行比较,以预测基于GIS的滑坡灾害。随着网格尺寸的增加,山区平均坡度和曲率减小,下降趋势明显。比较各种坡度和土层深度的无限边坡分析和圆形破坏分析,采用无限边坡分析的安全系数要大于圆形破坏分析的安全系数。结果表明,如果网格尺寸较小(如5 m×5 m),则安全系数取决于由两个连续斜坡构成的斜坡的形状。因此,在适当考虑土壤深度和地形之后,必须进行适当的边坡稳定性分析。

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