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Stability Of A Coupling Technique For Partitioned Solvers In Fsi Applications

机译:Fsi应用中分区求解器耦合技术的稳定性

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This paper focuses on the stability of the coupling iterations in the partitioned approach to fluid-structure interaction. Previous research has shown that the number of coupling iterations increases when the time step decreases or when the structure becomes more flexible which is explained here by Fourier error analysis of the unsteady, incompressible flow in an elastic tube. Substituting a linearized model of the structural solver into the flow solver makes the coupling more stable but is impracticable if the flow solver is a black box. Therefore the coupling iterations are stabilized by coupling with reduced-order models and Aitken underrelaxation.
机译:本文关注于流体-结构相互作用的分区方法中耦合迭代的稳定性。先前的研究表明,当时间步长减小或结构变得更灵活时,耦合迭代次数会增加,这在此处通过对弹性管中不稳定,不可压缩的流动进行傅立叶误差分析来解释。将结构化求解器的线性化模型替换为流动求解器可以使耦合更稳定,但如果流动求解器是黑匣子,则不可行。因此,通过与降阶模型和Aitken松弛松弛耦合来稳定耦合迭代。

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