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LOADS AND DYNAMIC RESPONSE OF A FLOATING WAVE ENERGY CONVERTER DUE TO REGULAR WAVES FROM CFD SIMULATIONS

机译:波动波能量转换器因CFD模拟产生的规则波的载荷和动态响应

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The commercial CFD code ANSYS Fluent is used for the three-dimensional estimation of wave loads and the dynamic response of a floating single point wave energy converter of the SINN Power wave power plant due to non-breaking and unidirectional waves in coastal waters. The VoF method is used to model the free surface and wave theories to set up the boundary conditions at the inlet for regular waves. The wave induced vertical motions of the floating module are computed by a sixDoF solver. Preliminary 2D and 3D studies to set up boundary conditions, mesh densities and solver settings were performed. The numerical results were compared to analytical solutions inform of water surface elevations and wave kinematics which showed good agreement. The paper presents the dynamic response of the floating module for different load cases in terms of non-breaking waves. The resulting horizontal and vertical forces at the floating module will be presented and explained by the flow dynamics. Time and space depending velocities and pressure distributions including details on vortex separation will be given, which reveal valuable insights on the contribution of inertia and drag forces leading to the dynamic structural response of the floating devices.
机译:商业CFD代码ANSYS Fluent用于波浪载荷的三维估算以及SINN电力波电厂的浮动单点波能量转换器由于沿岸水域的不间断和单向波而引起的动态响应。 VoF方法用于对自由表面和波浪理论进行建模,以设置规则波浪入口处的边界条件。波动模块的波动引起的垂直运动是由六自由度求解器计算的。初步进行了2D和3D研究,以设置边界条件,网格密度和求解器设置。将数值结果与解析结果进行了比较,结果表明水面高度和波浪运动学具有很好的一致性。本文以不间断波的形式介绍了浮动模块在不同载荷情况下的动态响应。流动模块将显示和解释在浮动模块上产生的水平和垂直力。将给出时间和空间相关的速度和压力分布,包括涡旋分离的详细信息,这揭示了对惯性和拖曳力的贡献的有价值的见解,这些惯性和拖曳力导致了浮动装置的动态结构响应。

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