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A stabilised immersed boundary method on hierarchical b-spline grids for fluid-rigid body interaction with solid-solid contact

机译:分层b样条网格上的稳定沉浸边界方法,用于固-固接触的流体-刚体相互作用

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摘要

An accurate, efficient and robust numerical scheme is presented for the simulation of the interaction between flexibly-supported rigid bodies and incompressible fluid flow with topology changes and solid-solid contact. The solution of the incompressible Navier-Stokes equations is approximated by employing a stabilised formulation on Cartesian grids discretised with hierarchical b-splines. The solid is modelled as a rigid body and represented by linear segments along its boundary. Kinematic conditions along the fluid-rigid body interface are enforced weakly using Nitsche's method, while ghost penalty operators are employed to avoid excessive ill-conditioning of the system matrix arising from small cut cells. A staggered scheme is used for resolving the coupled fluid-rigid body interaction. The contact between moving or moving and fixed solid bodies is modelled with Lagrange multipliers. The excellent performance and wide range of applicability of the proposed scheme are demonstrated in a number of benchmark tests as well as industrially relevant model problems. The examples cover the galloping phenomena, particulate flow, hydraulic check valves and a model turbine. (C) 2017 Elsevier B.V. All rights reserved.
机译:提出了一种精确,有效和鲁棒的数值方案,用于模拟柔性支撑的刚体与不可压缩流体之间的拓扑变化和固-固接触的相互作用。不可压缩的Navier-Stokes方程的解是通过在用分层b样条离散的笛卡尔网格上采用稳定公式来近似的。实体被建模为刚体,并由沿其边界的线性线段表示。沿流体-刚体界面的运动条件是使用Nitsche的方法弱地强制执行的,而采用幻影罚分运算符来避免由于小切口单元格引起的系统矩阵的过度不适。交错方案用于解决流体-刚体耦合的问题。使用拉格朗日乘数对移动的或移动的实体与固定的实体之间的接触进行建模。在许多基准测试以及与工业相关的模型问题中,证明了该方案的出色性能和广泛的适用性。示例涵盖了奔腾现象,颗粒流,液压止回阀和涡轮模型。 (C)2017 Elsevier B.V.保留所有权利。

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