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Analysis of several subcycling schemes in partitioned simulations of a strongly coupled fluid-structure interaction

机译:近耦合流体结构相互作用分区模拟中的几个子单次方案的分析

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摘要

Fluid-structure interaction (FSI) simulations are used extensively to calculate the vibration of structures subjected to an internal or external flow. In the case of partitioned FSI simulations, separate flow and structure solvers are used, which requires some kind of coupling between both. The time step in both solvers is typically taken the same, but this unnecessarily leads to long calculation times when the time step is small due to stability reasons in one of the two solvers. Subcycling, the procedure where the time step of one solver is chosen smaller than the time step used in the other solver, may reduce the computational cost of the FSI simulation. The subcycling procedure can be either explicit or implicit, the latter implying the use of coupling iterations in each time step. Contrary to explicit subcycling, no stability analyses of implicit subcycling schemes are found in the literature. In this paper, the temporal stability of the implicit subcycling procedure is investigated. The one-dimensional flow in an elastic cylindrical tube is studied analytically. The results of this analysis are subsequently compared to a partitioned two-dimensional axisymmetric FSI calculation with implicit coupling between the flow and structure solvers.
机译:流体结构相互作用(FSI)模拟广泛用于计算经受内部或外部流动的结构的振动。在分区FSI模拟的情况下,使用单独的流动和结构溶剂,这需要两者之间的某种耦合。两个求解器中的时间步长通常是相同的,但是由于两个求解器中的一个中的稳定性原因,这是不必要的时间步长的计算时间。子单,选择一个解算器的时间步骤小于其他求解器中使用的时间步长的过程,可以降低FSI仿真的计算成本。子单程程序可以是明确的或隐含的,后者意味着在每次步骤中使用耦合迭代。与明确的亚细胞相反,文献中没有发现隐式亚单循环方案的稳定性分析。在本文中,研究了隐式亚细胞过程的时间稳定性。在分析上研究了弹性圆柱形管中的一维流动。随后将该分析的结果与流动和结构溶剂之间的隐式耦合进行分区的二维轴对称FSI计算。

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