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首页> 外文期刊>International Journal for Numerical Methods in Engineering >On the need for the use of error-controlled finite element analyses in structural shape optimization processes
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On the need for the use of error-controlled finite element analyses in structural shape optimization processes

机译:关于在结构形状优化过程中使用误差控制的有限元分析的需求

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This work analyzes the influence of the discretization error associated with the finite element (FE) analyses of each design configuration proposed by the structural shape optimization algorithms over the behavior of the algorithm. The paper clearly shows that if FE analyses are not accurate enough, the final solution provided by the optimization algorithm will neither be optimal nor satisfy the constraints. The need for the use of adaptive FE analysis techniques in shape optimum design will be shown. The paper proposes the combination of two strategies to reduce the computational cost related to the use of mesh adaptivity in evolutionary optimization algorithms: (a) the use of an algorithm for the mesh generation by projection of the discretization error, which reduces the computational cost associated with the adaptive FE analysis of each geometrical configuration and (b) the successive increase of the required accuracy of the FE analyses in order to obtain a considerable reduction of the computational cost in the early stages of the optimization process.
机译:这项工作分析了离散误差与结构形状优化算法提出的每种设计配置的有限元(FE)分析相关的对算法行为的影响。该论文清楚地表明,如果有限元分析不够准确,则优化算法提供的最终解决方案将既不是最佳解决方案,也不是满足约束条件。将显示在形状优化设计中使用自适应有限元分析技术的需求。本文提出了两种策略的组合,以减少与在进化优化算法中使用网格自适应性相关的计算成本:(a)使用通过离散化误差的投影生成网格的算法,从而降低了相关的计算成本(b)连续增加有限元分析的所需精度,以便在优化过程的早期阶段显着降低计算成本。

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