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A 3-D numerical study of solitary wave interaction with vertical cylinders using a parallelised particle-in-cell solver 被引量:1
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作者 Qiang Chen Jun Zang +1 位作者 david m.kelly Aggelos S.Dimakopoulos 《Journal of Hydrodynamics》 SCIE EI CSCD 2017年第5期790-799,共10页
This paper aims to provide a better understanding of the interaction between solitary waves and vertical circular cylinders. This is achieved via process based numerical modelling using the parallel particle-in-cell b... This paper aims to provide a better understanding of the interaction between solitary waves and vertical circular cylinders. This is achieved via process based numerical modelling using the parallel particle-in-cell based incompressible flow solver PICIN. The numerical model solves the Navier-Stokes equations for free-surface flows and incorporates a Cartesian cut cell method for fluid-structure interaction. Solitary waves are generated using a piston-type wave paddle. The PICIN model is first validated using a test case that involves solitary wave scattering by a single vertical cylinder. Comparisons between the present results and experimental data show good agreement for the free surface elevations around the cylinder and the horizontal wave force on the cylinder. The model is then employed to investigate solitary wave interaction with a group of eleven vertical cylinders. The wave run-up and wave forces on the cylinders are discussed. 展开更多
关键词 CFD hybrid Eulerian-Lagrangian particle-in-cell solitary wave vertical cylinder
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