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A CBS-based partitioned semi-implicit coupling algorithm for fluid-structure interaction using MCIBC method

机译:基于CBS的分区半隐式流固耦合的MCIBC方法。

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The characteristic-based split (CBS) scheme has been extensively utilized to address the fluid subproblem within fluid-structure interaction (FSI) analyses over the past decade. To cope with FSI, this article develops a CBS-based partitioned semi-implicit coupling algorithm where the CBS scheme serves not only for the fluid component but also for the entire coupling algorithm. At each time instant, the first step of the CBS scheme is explicitly treated together with the fluid mesh movement, while the remaining two steps are implicitly coupled with the structural motion on the fluid mesh frozen temporarily. To retrieve the semi-implicit coupling style, a mass source term is iteratively updated in the pressure Poisson equation for elements adhering to the fluid-structure interface. The present algorithm provides the stabilized solution of the Navier-Stokes equations and the computational reduction without stability drop, thus inheriting the virtues of the CBS scheme and the projection-based semiimplicit coupling method. Within our coupling algorithm, FSI is achieved by the modified combined interface boundary condition (MCIBC) method which is re-derived in a more concise fashion. A weak implementation of the MCIBC method is proposed to avoid deteriorating the numerical results. The MCIBC method rectifies the limitations of its original counterpart, making itself applicable to fluid-rigid/flexible body interaction. Flow-induced vibrations of various bluff bodies are analyzed to test the feasibility of the proposed methodology. The overall numerical results agree well with the existing data, demonstrating the validity and the applicability of the present approach. (C) 2015 Elsevier B.V. All rights reserved.
机译:在过去十年中,基于特征的拆分(CBS)方案已被广泛用于解决流体-结构相互作用(FSI)分析中的流体子问题。为了应对FSI,本文开发了一种基于CBS的分区半隐式耦合算法,其中CBS方案不仅适用于流体成分,还适用于整个耦合算法。在每个时刻,CBS方案的第一步都与流体网格运动一起明确处理,而其余的两个步骤与暂时冻结的流体网格上的结构运动隐式耦合。要检索半隐式耦合方式,可以在压力泊松方程中迭代更新质源项,以粘附到流体-结构界面上的元素。该算法提供了Navier-Stokes方程的稳定解,并且在不降低稳定性的前提下进行了计算简化,从而继承了CBS方案和基于投影的半隐式耦合方法的优点。在我们的耦合算法中,通过改进的组合接口边界条件(MCIBC)方法实现了FSI,该方法以更简洁的方式重新得出。为避免数值结果恶化,提出了MCIBC方法的弱实现。 MCIBC方法纠正了其最初对应方法的局限性,使其适用于流体刚性/柔性体相互作用。分析了各种钝体的流动引起的振动,以测试所提出方法的可行性。总体数值结果与现有数据非常吻合,证明了本方法的有效性和适用性。 (C)2015 Elsevier B.V.保留所有权利。

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