SPH Simulation of Solitary Wave Interaction with Cylinder

Guozhen Cai, Chi Zhang, Yafei Yang, Min Luo
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Abstract

The wave impact on marine structures is concerning in ocean and coastal engineering. Cylinders are important components of various marine structures such as piers of sea-crossing bridge, columns of oil and gas platforms and subsea pipelines. In this study, the interaction of solitary wave with a submerged horizontal cylinder and a surface-piercing vertical cylinder are numerically studied by the Smoothed Particle Hydrodynamics (SPH) code SPHinXsys. SPHinXsys is an open-source multi-physics library based on the weakly compressible SPH and invokes the low-dissipation Riemann solver for alleviating numerical noises in the simulation of fluid dynamics. The capability of SPHinXsys in reproducing the fluid fields of solitary wave propagating through cylinders is demonstrated by comparing with the experimental data. With the validation in hand, the features of the wave–structure process are examined.
孤立波与圆柱相互作用的SPH模拟
波浪对海洋结构物的冲击是海洋与海岸工程中关注的问题。钢瓶是跨海大桥桥墩、油气平台柱、海底管道等各种海洋构筑物的重要组成部分。本文利用SPHinXsys平滑粒子流体力学(SPH)程序,对孤立波与水下水平圆柱和穿透表面的垂直圆柱的相互作用进行了数值研究。SPHinXsys是一个基于弱可压缩SPH的开源多物理库,并调用低耗散黎曼解算器来减轻流体动力学模拟中的数值噪声。通过与实验数据的比较,验证了SPHinXsys模拟孤立波在圆柱体中传播的流场的能力。在验证的基础上,对波浪结构过程的特征进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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