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Alternative Mesh Optimization for h-Adaptive Procedures in Practical 3D Analysis

机译:实用3D分析中H-Adaptive程序的替代网格优化

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Adaptive strategies are a necessary tool to make FEA applicable to engineering practice. In this paper, attention is restricted to mesh adaptivity. Traditionally, the most common mesh adaptive strategies for linear problems are used to reach a prescribed accuracy. This goal is best met with an h-adaptive scheme in combination with an error estimator. In an industrial context, the aim of the mechanical simulations in engineering design is not only to obtain greatest quality but more often a compromise between the desired quality and the computation cost (CPU time, storage, software, competence, human cost, computer used). In this paper we propose the use of alternative mesh refinement with an h-adaptive procedure for 3D elastic problems. The alternative mesh refinement criteria (MR) are based on: prescribed number of elements with maximum accuracy, prescribed CPU time with maximum accuracy and prescribed memory size with maximum accuracy. These adaptive strategies are based on a technique of error in constitutive relation (the process could be used with other error estimators) and an efficient adaptive technique which automatically takes into account the steep gradient areas. This work proposes a 3D method of adaptivity with the latest version of the INRIA automatic mesh generator GAMHIC3D.
机译:自适应策略是一种使FEA适用于工程实践的必要工具。在本文中,注意力被限制为网格适应性。传统上,用于线性问题的最常见的网格自适应策略用于达到规定的准确性。该目标与H-Adaptive Schements最佳地满足了与误差估计器相结合。在工业背景中,工程设计中机械模拟的目的不仅可以获得最大的质量,而且更常见的是所需的质量和计算成本(CPU时间,存储,软件,能力,人力成本,所用计算机之间的折衷) 。在本文中,我们建议使用替代网格精制与用于3D弹性问题的H适度过程。替代网格细化标准(MR)基于:规定的元素数量具有最大精度,规定的CPU时间具有最大精度和规定的内存大小,最大精度。这些自适应策略基于本构思中的误差技术(该过程可以与其他误差估计器一起使用)和一种有效的自适应技术,其自动考虑陡峭的梯度区域。这项工作提出了一种与最新版本的INRIA自动网格发生器GAMHIC3D的3D方法。

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