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Yield-stress based error indicator for adaptive quasi-static yield design of structures

机译:基于屈服应力的误差指标用于结构自适应准静态屈服设计

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摘要

Error indicator plays an essential role in developing automatically adaptive analysis procedures that can maximize the rate of convergence of the approximation. For direct limit state analysis problems, the accuracy of numerical solutions is highly affected by local singularities arising from localized yield stresses. It turns out that these local singularity regions should be refined in computational process, making sure that errors in the stress fields can be reduced. In this paper, an error indicator based on the localized yield stresses for adaptive quasi-static yield design of structures will be described. The non-linear yield criterion is formulated as a quadratic conic constraint, allowing that the obtained optimization problem can be solved using highly efficient solvers. Various numerical examples are examined to illustrate the performance of the proposed adaptive procedure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:误差指示器在开发自动自适应分析程序中起着至关重要的作用,该程序可以使近似值的收敛速度最大化。对于直接极限状态分析问题,数值解的精度受局部屈服应力引起的局部奇异性的影响很大。结果表明,应在计算过程中细化这些局部奇异区域,以确保可以减少应力场中的误差。本文将介绍一种基于局部屈服应力的误差指标,用于结构的自适应准静态屈服设计。非线性屈服准则被公式化为二次圆锥约束,从而可以使用高效求解器来求解所获得的优化问题。检查了各种数值示例,以说明所提出的自适应过程的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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