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An Eulerian-Lagrangian-Lagrangian method for solving thin moving rigid body immersed in the fluid

机译:一种抗浸入流体中的薄移动刚体 - 拉格朗日 - 拉格朗日方法

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摘要

It is convention in computational mechanics to use Eulerian grids for fluids and Lagrangian grids for solids. In this paper, a novel method called ELL using both Lagrangian and Eulerian grids for fluids is presented in a carefully designed manner to handle complex fluid-structure interaction (FSI) problems with moving thin rigid body. The key idea is to use a small portion of the fluid to wrap the thin body. This wrapping fluid is described in Lagrangian coordinate, the same way the solid is described. They are treated as one "composite solid" thus the immersed domain method (IDM) can be implemented. In this way, the moving interface boundary conditions can be explicitly imposed with the help of the unified Lagrangian grids in the interaction zone. The initial fluid domain can still be treated as usual Eulerian grids based on IDM theory by introducing a fictitious fluid. The FSI interface can be accurately modeled since the wrapping fluid and the solid are always attached together. This effectively solves the major "blur interface" problem in the conventional immersed boundary method (IBM). To demonstrate this ELL idea, a number of benchmark examples have been studied in comparison with the results in the open literature. Finally, a 2D flapping wing is simulated to show the potential of ELL in engineering application. It is observed that ELL method proves to be good in performance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:它是计算力学中的公约,用于使用欧拉网格的流体和拉格朗日网格用于固体。在本文中,以仔细设计的方式呈现使用Lagrangian和欧拉栅格的LAGRANGIAN和欧拉栅格的新方法,以处理具有移动薄刚体的复杂的流体结构相互作用(FSI)问题。关键的想法是使用一小部分流体包裹薄体。这种包装液在拉格朗日坐标中描述,相同的方式描述了固体。它们被视为一个“复合实体”,因此可以实现浸没的域法(IDM)。以这种方式,可以在相互作用区域中的统一拉格朗日网格的帮助下明确地施加移动接口边界条件。初始流体结构域仍然可以通过引入虚拟流体作为IDM理论作为常见的欧拉网格。可以精确地建模FSI界面,因为包装液和固体总是连接在一起。这有效地解决了传统的浸没边界法(IBM)中的主要“模糊界面”问题。为了证明这一点的想法,已经研究了许多基准示例与开放文献中的结果进行了比较。最后,模拟了2D拍翼以显示ELL在工程应用中的潜力。观察到ell方法证明是良好的性能。 (c)2018年elestvier有限公司保留所有权利。

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