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Shear Strength Characterization and Back Analysis for a Landslide Complex

机译:滑坡复合物的剪切力量表征及反应分析

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Future phases of landfill expansion at a municipal solid waste landfill in Southern California required the characterization and mitigation of a 16-hectare complex of coalescing pre-existing landslides in sedimentary bedrock. Traditional back-analysis of the entire slide mass yielded unreasonably low values of slide plane shear strength. A hybrid approach, which combined laboratory testing for site-specific validation and application of empirical correlations, with back analysis of a retrogressive failure geologic model, resulted in a realistic evaluation of slide plane shear strength. A limit equilibrium model developed to simulate the progressive nature of the failure, correctly predicted the geometry of each stage of the failure accompanied by a corresponding factor of safety at or less than unity, thereby validating both the progressive nature of the failure and the shear strength parameters. Numerical analysis using FLAC was an additional verification of the progressive failure.
机译:在南加州市政固体废物垃圾填埋场的未来阶段阶段需要在沉积基岩中聚结的三公顷复合体的表征和减轻沉积物。对整个滑动质量的传统背分析产生了不合理的滑动平面剪切强度值。一种混合方法,其特定于现场验证和应用实证相关性的实验室检测,回到倒退失败地质模型的后分析,导致滑动平面剪切强度的逼真评估。开发用于模拟失败的渐进性的极限平衡模型,正确地预测了失败的每个阶段的几何形状,伴随着对应的安全系数,从而验证了故障和剪切强度的逐步性质参数。使用FLAC的数值分析是逐步验证的逐步失败。

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