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Upper-Bound Multi-Rigid-Block Solutions for Seismic Performance of Slopes with a Weak Thin Layer

机译:具有弱薄层的斜坡抗震性能的上限多刚性块解决方案

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摘要

The presence of a weak layer has an adverse influence on the seismic performance of slopes. The upper-bound solution serves as a rigorous method in the stability analysis of geotechnical problems. In this study, a multi-rigid-block solution based on the category of the upper-bound theorem of limit analysis is presented to examine the seismic performance of nonhomogeneous slopes with a weak thin layer. Comparison of the static factors of safety is conducted with various solutions (i.e., limit analysis with a different failure mechanism, limit equilibrium solution, and numerical method), and the results exhibit reasonable consistency. An analytical solution in estimating the critical yield acceleration coefficient is derived, and the influence of slope angle, slope height, and soil strength on the critical yield acceleration coefficient and failure mechanism is analyzed. Subsequently, Newmark’s analytical procedure is employed to evaluate cumulative displacement with various real earthquake acceleration records as input motion. Results show that the strength and geometric parameters have a remarkable influence on the critical yield acceleration coefficient, and the cumulative displacement increases with the increasing slope angle.
机译:薄弱层的存在对斜坡的地震性能产生了不利影响。上界解决方案用作岩土问题稳定性分析中的严格方法。在该研究中,提出了一种基于极限分析的上限定理类别的多刚性块解决方案,以检查非均匀斜率与弱薄层的地震性能。用各种溶液进行安全静态因子的比较(即,用不同的故障机理,限制平衡溶液和数值方法的限制分析,结果表现出合理的稠度。推导估计临界产量加速度系数的分析解决方案,分析了倾斜角,斜坡高度和土壤强度对临界产量加速度系数和故障机制的影响。随后,采用纽马克的分析过程来评估各种真实地震加速记录作为输入运动的累积位移。结果表明,强度和几何参数对临界屈服加速度系数具有显着影响,累积位移随着坡度的增加而增加。

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