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Dual finite-element analysis using second-order cone programming for structures including contact

机译:使用二阶锥形编程的双有限元分析,包括联系

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Computation of elastic structures in contact is performed by means of a dual analysis combining displacement-based and equilibrium-based finite elements. Contact conditions are formulated in the framework of second-order cone programming (SOCP) and an efficient interior point method (IPM) algorithm is presented for solving the associated optimization problems. The dual approach allows the user to assess the quality of convergence and to efficiently calculate a discretization error estimator which includes a contact error term. An efficient remeshing scheme, based on the local contributions of the elements to the global error, can then be used to efficiently improve the solution accuracy. The whole process is illustrated on some examples and applied to a typical steel assembly. Its efficiency, in particular concerning the IPM solver, is demonstrated in comparison with the industrial finite element code Abaqus.
机译:通过组合位移基和基于平衡的有限元件的双分析来执行接触中的弹性结构的计算。联系条件在二阶锥编程(SOCP)的框架中配制,提出了一种有效的内部点方法(IPM)算法,用于解决相关优化问题。双方法允许用户评估收敛的质量,并有效地计算包括联系误差项的离散误差估计器。然后,基于本地贡献对全局误差的本地贡献的有效回忆方案可以用来有效地提高解决方案准确性。整个过程在一些示例上示出并应用于典型的钢组件。与工业有限元代码ABAQUS相比,其效率尤其有关IPM求解器。

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