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Numerical Simulation of Water Impact in 3D by LVOF

机译:LVOF在3D中对水冲击的数值模拟

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摘要

Based on our highly efficient Navier-Stokes solver, LVOF (Li, et al., 2004, 2007), we present some results for water entry and exit in a 3D numerical wave tank, by implementing our design of a mass-force coupling scheme for water impact (Li, et al., 2007a). LVOF is constructed by a novel VOF finite volume cut-cells approach that incorporates surface tension, coupled with a dynamic subgrid-scale model.rnOur mass-force coupling model in theory represents the coupling of a moving body on the flow, which is realized through introducing the internal source function. Importantly, a solid body is treated as a fluid, especially the solid-liquid phase front is captured over a fixed Cartesian grid without smearing the information at the particle-fluid interface.rnGrid refinement studies are performed for test problems involving the wedge entry and exit. In addition, issue about the convergence performance is addressed under the prescribed entry velocity. Very encouragingly, the results agree with measurements available. It is demonstrated that most of typical features in complex flow patterns can be captured in waves caused by impact, by using LVOF.
机译:基于我们高效的Navier-Stokes求解器LVOF(Li等人,2004年,2007年),我们通过实施质量力耦合方案的设计,给出了3D数值波箱中水进入和排出的一些结果。 (Li等,2007a)。 LVOF是通过一种新颖的VOF有限体积切割单元方法构造而成的,该方法结合了表面张力并结合了动态子网格比例模型.rn我们的质量力耦合模型理论上表示了运动体在流上的耦合,这是通过以下方式实现的:介绍内部源函数。重要的是,将固体视为一种流体,尤其是固相前沿被捕获在固定的笛卡尔网格上,而不会在粒子-流体界面上涂抹信息。对于涉及楔子入口和出口的测试问题,进行了网格细化研究。 。另外,在规定的进入速度下解决了关于收敛性能的问题。令人鼓舞的是,结果与可用的测量结果吻合。结果表明,通过使用LVOF,可以将复杂流型中的大多数典型特征捕获在冲击波中。

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