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Simulation of free surface flows using the flux‐difference splitting scheme on the hybrid Cartesian/immersed boundary method
Authors:Sangmook Shin  Sung Yong Bae  In Chul Kim  Yong Jig Kim  Hyeon Kyu Yoon
Institution:1. Department of Naval Architecture and Marine Systems Engineering, Pukyong National University, Busan 608‐737, Korea;2. Department of Naval Architecture and Marine Engineering, Changwon National University, Changwon 641‐773, Korea
Abstract:In this study, a method is developed to simulate the interaction between free surface flows and moving or deforming boundaries using the flux‐difference splitting scheme on the hybrid Cartesian/immersed boundary method. At each physical time step, the boundary is defined by an unstructured triangular surface grid. Immersed boundary (IB) nodes are distributed inside an instantaneous fluid domain based on edges crossing the boundary. At an IB node, dependent variables are reconstructed along the local normal line to the boundary. Inviscid fluxes are computed using Roe's flux‐difference splitting scheme for immiscible and incompressible fluids. The free surface is considered as a contact discontinuity in the density field. The motion of free surface is captured without any additional treatment along the fluid interface. The developed code is validated by comparisons with other experimental and computational results for a piston‐type wave maker, impulsive motion of a submerged circular cylinder, flow around a submerged hydrofoil, and Rayleigh–Taylor instability. The developed code is applied to simulate wave generation due to a continuously deforming bed beneath the free surface. The violent motion of a free surface caused by sloshing in a spherical tank is simulated. In this case, the free surface undergoes breakup and reconnection. Copyright © 2011 John Wiley & Sons, Ltd.
Keywords:free surface  contact discontinuity  incompressible fluids  immersed boundary  wave maker  hydrofoil  deforming bed  sloshing
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