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Recent Results from Analysis of Flow Structures and Energy Modes Induced by Viscous Wave around a Surface-Piercing Cylinder

机译:由粘性波浪围绕表面刺穿缸诱导的流动结构和能量模式的近期结果

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摘要

Due to its relevance in ocean engineering, the subject of the flow field generated by water waves around a vertical circular cylinder piercing the free surface has recently started to be considered by several research groups. In particular, we studied this problem starting from the velocity-potential framework, then the implementation of the numerical solution of the Euler equations in their velocity-pressure formulation, and finally the performance of the integration of the Navier-Stokes equations in primitive variables. We also developed and applied methods of extraction of the flow coherent structures and most energetic modes. In this work, we present some new results of our research directed, in particular, toward the clarification of the main nonintuitive character of the phenomenon of interaction between a wave and a surface-piercing cylinder, namely, the fact that the wave exerts its maximum force and exhibits its maximum run-up on the cylindrical obstacle at different instants. The understanding of this phenomenon becomes of crucial importance in the perspective of governing the entity of the wave run-up on the obstacle by means of wave-flow-control techniques.
机译:由于其在海洋工程中的相关性,围绕垂直圆筒围绕自由表面产生的水波产生的流场的主体最近开始被几个研究组考虑。特别地,我们从速度 - 电位框架开始研究这个问题,然后在它们的速度压力制构中实现欧拉方程的数值解的实现,最后实现了Navier-Stokes方程在原始变量中的集成的性能。我们还开发了和应用了流动相干结构的提取和最精力充沛的模式的方法。在这项工作中,我们展示了我们的研究的一些新结果,特别是阐明了波和表面刺穿圆柱之间的相互作用现象的主要非线性特征,即,波浪施加最大值的事实在不同时刻的圆柱形障碍物上展示其最大速度。在通过波通控制技术的角度来看,对这种现象的理解是至关重要的,通过波动控制技术在障碍物上的波浪升起的实体的角度来看。

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