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首页> 外文期刊>International Journal for Numerical Methods in Fluids >MIXED EXPLICIT/IMPLICIT TIME INTEGRATION OF COUPLED AEROELASTIC PROBLEMS: THREE-FIELD FORMULATION, GEOMETRIC CONSERVATION AND DISTRIBUTED SOLUTION
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MIXED EXPLICIT/IMPLICIT TIME INTEGRATION OF COUPLED AEROELASTIC PROBLEMS: THREE-FIELD FORMULATION, GEOMETRIC CONSERVATION AND DISTRIBUTED SOLUTION

机译:耦合的弹性/弹性问题的显式/隐式时间积分:三项式,几何守恒和分布式解决方案

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摘要

A three-field arbitrary Lagrangian-Eulerian (ALE) finite element/volume formulation for coupled transient aeroelastic problems is presented. The description includes a rigorous derivation of a geometric conservation law for flow problems with moving boundaries and unstructured deformable meshes. The solution of the coupled governing equations with a mixed explicit (fiuid)/implicit (structure) staggered procedure is discussed with particular reference to accuracy, stability, distributed computing, I/O transfers, subcycling and parallel processing. A general and flexible framework for implementing partitioned solution procedures for coupled aeroelastic problems on heterogeneous and/or parallel computational platforms is described. This framework and the explicit/ implicit partitioned procedures arc demonstrated with the numerical investigation on an iPSC-860 massively parallel processor of the instability of flat panels with infinite aspect ratio in supersonic airstreams.
机译:提出了耦合瞬态气动弹性问题的三场任意拉格朗日-欧拉(ALE)有限元/体积公式。该描述包括针对具有移动边界和非结构化可变形网格的流动问题的几何守恒定律的严格推导。讨论了具有混合的显式(流体)/隐式(结构)交错过程的耦合控制方程的解决方案,并特别参考了准确性,稳定性,分布式计算,I / O传输,子循环和并行处理。描述了一种通用灵活的框架,用于在异构和/或并行计算平台上实现耦合气弹问题的分区求解程序。在超音速气流中具有无限长宽比的平板不稳定性的iPSC-860大规模并行处理器上的数值研究证明了该框架和显式/隐式分区过程。

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