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A mesh adaptivity procedure for CFD and fluid-structure interactions

机译:CFD和流固耦合的网格自适应程序

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摘要

We present a procedure to adapt and repair meshes in the general solution of Navier-Stokes incompressible and compressible fluid flows, including structural interactions. For fluid-structure interactions, FSI, the fluid is described by an arbitrary-Lagrangian-Eulerian formulation fully coupled to general solids and structures described by Lagrangian formulations. The solids and structures can undergo highly nonlinear response due to large deformations, nonlinear material behavior, contact and temperature. We focus on the need to adapt the fluid mesh in pure CFD solutions when high gradients are present or boundary layer effects are important, and FSI solutions when large structural deformations take place. The procedure is a practical scheme to solve complex problems. We illustrate the proposed scheme in various example solutions.
机译:我们提出了一个程序来适应和修复Navier-Stokes不可压缩和可压缩流体流动的一般解决方案中的网格,包括结构相互作用。对于流体-结构相互作用,FSI,通过完全耦合到由拉格朗日公式描述的普通固体和结构的任意拉格朗日-欧拉公式来描述流体。由于较大的变形,非线性的材料行为,接触和温度,固体和结构可能会发生高度非线性的响应。当存在高梯度或边界层效应很重要时,我们专注于在纯CFD解决方案中适应流体网格的需求,而在发生大的结构变形时则需要FSI解决方案。该程序是解决复杂问题的实用方案。我们在各种示例解决方案中说明了所提出的方案。

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