首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >NUMERICAL SIMULATION OF NONLINEAR FREE SURFACE WATER WAVES: COUPLING OF A POTENTIAL FLOW SOLVER TO A URANS/VOF CODE
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NUMERICAL SIMULATION OF NONLINEAR FREE SURFACE WATER WAVES: COUPLING OF A POTENTIAL FLOW SOLVER TO A URANS/VOF CODE

机译:非线性自由表面水波的数值模拟:潜在流动解与URANS / VOF编码的耦合

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Numerical simulation of free surface water waves using various wave models is studied. The performance of the wave models is compared in three test cases in 2D, all of which include a focusing event. Then the attention is focused on coupling one of these wave models to a URANS/VOF code, ReFRESCO. Here the strong suits of both solvers are utilized to simulate nonlinear water waves in an accurate and efficient manner. Even though only simulating nonlinear waves is discussed in this paper, the main purpose of the coupling approach is to simulate hydrody-namic wave loading on structures and wave-structure interaction. Computational cost, convergence behavior and effects of grid refinement are some of the topics that are also discussed throughout the paper.
机译:研究了使用各种波模型的自由表面水波的数值模拟。波动模型的性能在2D中的三个测试用例中比较,所有这些都包括聚焦事件。然后,注意力集中在耦合到urans / vof代码,刷新这些波模型之一。这里,两个溶剂的强套装用于以准确和有效的方式模拟非线性水波。尽管在本文中仅讨论了模拟非线性波,但耦合方法的主要目的是在结构和波浪结构相互作用上模拟水晶 - 纳米波负荷。电网细化的计算成本,收敛行为和效果是综述中也讨论的一些主题。

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