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Space–time POD based computational vademecums for parametric studies: application to thermo-mechanical problems

机译:用于参数研究的基于时空POD的计算式Vademecums :在热机械问题中的应用

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Abstract Standard numerical simulations for optimization or inverse identification of welding processes remain costly and difficult due to their multi-parametric aspect and inherent complexity. The aim of this paper is to propose a non-intrusive strategy for building computational vademecums dedicated to real-time simulations of nonlinear thermo-mechanical problems. There is in essence, a set of precomputed space–time parametric solutions (snapshots), selected by an appropriate approach in the parameter space and stored in memory as quasi-optimal reduced bases (RBs) provided by the proper orthogonal decomposition method. Once the RBs are obtained, the computational vademecums can be used online and provide real-time space–time transient nonlinear thermo-mechanical solutions for any desired parameter value. The contributions of the paper consist in a space–time RBs interpolation approach with the Grassmann manifolds method, and a localized multigrid selection method that allows an automatic selection of snapshots in the parameter areas of interest for a given level of accuracy. As application, the welding simulation is considered with a transient non-linear thermo-mechanical model using the finite element method. It is shown that the moving frame allows an optimal design of the RBs. A good efficiency of the proposed approach is demonstrated. Computational vademecums can be used for optimization or inverse identification problems of welding.
机译:摘要由于其多参数方面和固有的复杂性,用于优化或逆向识别焊接过程的标准数值模拟仍然昂贵且困难。本文的目的是提出一种非侵入性的策略,用于构建专门针对非线性热机械问题的实时仿真的计算变量。从本质上讲,存在一组预先计算的时空参数解(快照),它们是通过适当的方法在参数空间中选择的,并作为适当的正交分解方法提供的准最佳归约基数(RB)存储在内存中。一旦获得了RB,就可以在线使用计算变量,并为任何期望的参数值提供实时的时空瞬态非线性热机械解决方案。本文的贡献包括采用格拉斯曼流形方法的时空RBs插值方法和局部多网格选择方法,该方法可在给定的精度水平下自动在感兴趣的参数区域中选择快照。作为应用,可以使用有限元方法通过瞬态非线性热力学模型来考虑焊接模拟。结果表明,移动框架可以优化RB。证明了该方法的良好效率。计算变量可以用于优化或逆向识别焊接问题。

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