Upper Bound Limit Analysis of 2D Structures Using Lagrange Extraction-Based Isogeometric Analysis

Van Hien Do
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Abstract

This work presents a new approach that uses Lagrange extraction-based isogeometric analysis and Second Order Cone Programming (SOCP) to determine the limit load factor in two-dimensional problems. This methodology makes use of an upper-bound limit approach and a rigid-perfectly plastic material model. Lagrange extraction is used to link a C0 nodal basis to a smooth B-spline basis. This enables the use of straightforward methods for isogeometric analysis in conventional finite element systems. A SOCP problem is created from the limit analysis problem, which may then be solved using Mosek optimization software. The numerical results indicate the correctness and effectiveness of the current technique by contrasting it with other approaches mentioned in the literature.
基于拉格朗日提取等几何分析的二维结构上限分析
本文提出了一种新的方法,利用基于拉格朗日提取的等几何分析和二阶锥规划(SOCP)来确定二维问题的极限载荷因子。该方法利用了上限法和刚-完全塑性材料模型。拉格朗日提取用于连接C0节点基到光滑b样条基。这使得在传统的有限元系统中使用直接的等几何分析方法成为可能。从极限分析问题产生一个SOCP问题,然后可以使用Mosek优化软件来解决。通过与文献中其他方法的对比,数值结果表明了该方法的正确性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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