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首页> 外文期刊>International journal of geomechanics >Stability and Deformation Analysis for Geotechnical Problems with Nonassociated Plasticity Based on Second-Order Cone Programming
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Stability and Deformation Analysis for Geotechnical Problems with Nonassociated Plasticity Based on Second-Order Cone Programming

机译:基于二阶锥规划的非关联可塑性岩土工程稳定性和变形分析

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摘要

The second-order cone programming (SOCP) optimized FEM (named FEM-SOCP) is extended to solve the geotechnical problems involving nonassociated plasticity. When FEM-SOCP is used with strength reduction, FEM-SOCP generally can be more efficient because the shear strength reduction FEM (SSRFEM) is often used with a very large allowable maximum number of nonlinear iterations. The FEM-SOCP method cannot be directly applied to the geotechnical deformation analysis involving the nonassociated plasticity because only the geotechnical problem with associated plasticity can be cast into the SOCP problem. To remove the difficulty, a time-discrete method with automatic error control is proposed for the iterative scheme of approximating the nonassociated plastic problems with a series of associated plastic problems. Based on numerical investigations, the time step factor with the range of = 0.1-0.4 generally may lead to an accurate solution with an optimized efficiency.
机译:二阶锥规划(SOCP)优化的有限元方法(称为FEM-SOCP)得到扩展,以解决涉及非关联塑性的岩土工程问题。当使用FEM-SOCP进行强度折减时,由于抗剪强度折减FEM(SSRFEM)通常以非常大的最大非线性迭代次数使用,因此FEM-SOCP通常会更有效。 FEM-SOCP方法不能直接应用于涉及非关联可塑性的岩土变形分析,因为只有具有关联可塑性的岩土问题才能被转化为SOCP问题。为了消除困难,提出了一种具有自动误差控制的时间离散方法,该迭代方法用于用一系列相关的塑性问题来近似非相关的塑性问题的迭代方案。基于数值研究,时间步长因子的范围通常为= 0.1-0.4,这可能会导致具有最佳效率的精确解决方案。

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