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Immersed boundary methods for fluid-structure interaction: A review

机译:液-固相互作用的沉浸边界方法:综述

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摘要

In this review, we introduce immersed boundary (IB) methods for fluid-structure interactions (FSIs) of rigid and elastic bodies. IB methods impose momentum forcing on an Eulerian mesh to satisfy boundary conditions on the interface between fluid and structure, which enables us to use a non-body conforming grid system for complex shaped moving bodies. Imposition of the momentum forcing is performed directly through discrete delta function or indirectly through velocity reconstruction, by which IB methods have their own strengths and weaknesses to FSI problems of rigid and elastic bodies. To deal with FSI, IB methods using monolithic and partitioned (strong and weak coupling) approaches with different stability and cost have been suggested. Nevertheless, two important problems in FSI, cases of low density ratio of solid to fluid and high Reynolds number, have not been completely overcome by current IB methods in terms of the stability, accuracy and cost. These aspects are examined in this review.
机译:在这篇综述中,我们介绍了用于刚性和弹性体的流固耦合(FSI)的浸入边界(IB)方法。 IB方法在欧拉网格上施加了动量强迫,以满足流体和结构之间的边界条件,这使我们能够对复杂形状的运动体使用非体形网格系统。动量强迫的施加直接通过离散增量函数执行,或通过速度重建间接执行,通过这种方法,IB方法在刚体和弹性体的FSI问题上各有优缺点。为了应对FSI,已提出了使用具有不同稳定性和成本的整体式和分区(强耦合和弱耦合)方法的IB方法。尽管如此,目前的IB方法在稳定性,准确性和成本方面还没有完全克服FSI中的两个重要问题,即低固液比和高雷诺数的情况。这些方面在本次审查中进行了检查。

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