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Estimation of 3D active earth pressure under nonlinear strength condition

机译:非线性强度条件下的3D主动土压力估算

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摘要

The calculation of active earth pressure behind retaining wall is a typical three-dimensional (3D) problem with spatial effects. With the help of limit analysis, this paper firstly deduces the internal energy dissipation power equations and various external forces power equations of the 3D retaining wall under the nonlinear strength condition, such as to establish the work-energy balance equation. The pseudo-static method is used to consider the effect of earthquake on active earth pressure in horizontal state. The failure mode is a 3D curvilinear cone failure mechanism. For the different width of the retaining wall, the plane strain block is inserted in the symmetric plane. By optimizing all parameters, the maximum value of active earth pressure is calculated. In order to verify the validity of the new expressions obtained by the paper, the solutions are compared with previously published solutions. Agreement shows that the new expressions are effective. The results of different parameters are given in the forms of figures to analysis the influence caused by nonlinear strength parameters.
机译:挡土墙后面的主动土压力的计算是一个典型的具有空间影响的三维(3D)问题。在极限分析的帮助下,首先推导了非线性强度条件下3D挡土墙的内部耗能功率方程和各种外力功率方程,建立了工作能量平衡方程。拟静力法用于考虑地震对水平状态下主动土压力的影响。失效模式是3D曲线圆锥失效机制。对于挡土墙的不同宽度,将平面应变块插入对称平面中。通过优化所有参数,可以计算出有效土压力的最大值。为了验证本文获得的新表达式的有效性,将解决方案与以前发布的解决方案进行了比较。协议表明新的表达方式是有效的。以图形形式给出了不同参数的结果,以分析非线性强度参数引起的影响。

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