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Finite Element Analysis of Overlying Soil Failure Based on Fault Dip Angle

机译:基于故障倾角的覆盖土破坏有限元分析

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When the strong earthquake occurs, the deformation response and rupture of the overlying soil are very complicated. In this paper, the influence of fault dip angle on the surface deformation and rupture of overlying soil is analyzed by means of finite element numerical simulation. When the vertical dislocation of the fault is about 3-5% of the thickness of the overlying soil layer, the surface rupture occurs only when the fault dip angle is 45°. When the vertical displacement of the fault increases to 10% of the thickness of the overlying soil layer, surface rupture occurs under three working conditions of 45°, 70° and 90° of fault dip angle. With the increase of the dip angle from 45°, 70° to 90°, the surface equivalent strain is gradually smaller, the deformation of the overlying soil is smaller, and the deformation width of the upper wall will change from about 2 times that of the lower wall to the same as the lower wall. The deformation and rupture of the overlying soil first begin with the fracture of the soil mass at the interface between the fault bedrock and the soil. With the increase of the dislocation quantity, the surface also will appear 1 breakpoint when the fault angle is 45° and 70°, the ground surface will appear 2 breakpoints when the fault angle is 90°, and at last overlying soil is broken through.
机译:当发生强烈地震时,上覆土壤的变形反应和破裂是非常复杂的。本文通过有限元数值模拟分析了故障倾角对覆盖土的表面变形和破裂的影响。当故障垂直脱位约为覆盖土层厚度的3-5%时,仅当故障倾角为45°时,才会发生表面破裂。当故障的垂直位移增加到上覆土壤层厚度的10%时,表面破裂在45°,70°和90°的故障倾角的三个工作条件下发生。随着45°,70°至90°的倾角的增加,表面等效应变逐渐变小,上覆土壤的变形较小,上壁的变形宽度将从约2倍变化下墙与下墙相同。上覆土壤的变形和破裂首先以故障基岩与土壤之间的界面处的土壤质量骨折开始。随着位错量的增加,当故障角为45°和70°时,表面也将出现1个断点,当故障角为90°时,地面将出现2个断点,并且在最后覆盖的土壤中断。

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