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Partitioned Simulation of Fluid-Structure Interaction: Coupling Black-Box Solvers with Quasi-Newton Techniques

机译:流体与结构相互作用的分区模拟:用拟牛顿技术耦合黑箱解算器

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In this review article, the focus is on partitioned simulation techniques for strongly coupled fluid-structure interaction problems, especially on techniques which use at least one of the solvers as a black box. First, a number of analyses are reviewed to explain why Gauss-Seidel coupling iterations converge slowly or not at all for fluid-structure interaction problems with strong coupling. This provides the theoretical basis for the fast convergence of quasi-Newton and multi-level techniques. Second, several partitioned techniques that couple two black-box solvers are compared with respect to implementation and performance. Furthermore, performance comparisons between partitioned and monolithic techniques are examined. Subsequently, two similar techniques to couple a black-box solver with an accessible solver are analyzed. In addition, several other techniques for fluid-structure interaction simulations are studied and various methods to take into account deforming fluid domains are discussed.
机译:在这篇综述文章中,重点是针对强耦合流体-结构相互作用问题的分区模拟技术,尤其是使用至少一个求解器作为黑匣子的技术。首先,对大量分析进行了回顾,以解释对于具有强耦合的流固耦合问题,高斯-塞德尔耦合迭代为何收敛缓慢或根本不收敛。这为准牛顿技术和多级技术的快速融合提供了理论基础。其次,比较了结合两个黑盒求解器的几种分区技术的实现和性能。此外,检查了分区技术和整体技术之间的性能比较。随后,分析了将黑盒求解器与可访问的求解器耦合的两种类似技术。此外,还研究了其他几种用于流体-结构相互作用模拟的技术,并讨论了考虑变形流体域的各种方法。

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