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Variational h-adaption for coupled thermomechanical problems

机译:变分H适应耦合热机械问题

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PurposeThe purpose of this paper is to present a variational mesh h-adaption approach for strongly coupled thermomechanical problems.Design/methodology/approachThe mesh is adapted by local subdivision controlled by an energy criterion. Thermal and thermomechanical problems are of interest here. In particular, steady and transient purely thermal problems, transient strongly coupled thermoelasticity and thermoplasticity problems are investigated.FindingsDifferent test cases are performed to test the robustness of the algorithm for the problems listed above. It is found that a better cost-effectiveness can be obtained with that approach compared to a uniform refining procedure. Because the algorithm is based on a set of tolerance parameters, parametric analyses and a study of their respective influence on the mesh adaption are carried out. This detailed analysis is performed on unidimensional problems, and a final example is provided in two dimensions.Originality/valueThis work presents an original approach for independent h-adaption of a mechanical and a thermal mesh in strongly coupled problems, based on an incremental variational formulation. The approach does not rely on (or attempt to provide) error estimation in the classical sense. It could merely be considered to provide an error indicator. Instead, it provides a practical methodology to adapt the mesh on the basis of the variational structure of the underlying mathematical problem.
机译:本文的目的目的是提出一个变分网H-AdaptionItion方法,用于强烈耦合的热机械问题.Design/methodology/ApproChe网格通过由能量标准控制的本地细分来调整。热和热机械问题在这里感兴趣。特别是,研究了稳定和瞬态的纯度热问题,进行了瞬态强耦合的热弹性和热塑性问题。进行了对上面列出的问题的算法的稳健性来进行挑战。发现与统一的精炼过程相比,可以使用该方法获得更好的成本效益。因为该算法基于一组公差参数,所以进行参数分析和对网格自适应的各自影响的研究。该详细的分析是对单维问题进行的,并且最终示例以两个维度提供。范围/钙乙液工作基于增量变分制剂,呈现了在强烈耦合问题中的机械和热网格的独立H-适应的原始方法。该方法不依赖于经典意义上的(或尝试提供)错误估计。它可能仅被认为提供错误指示符。相反,它提供了基于底层数学问题的变分结构来调整网格的实用方法。

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