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Hydrodynamic analysis of an oscillating water column wave energy converter in the stepped bottom condition using CFD

机译:基于CFD的阶梯底部条件下振荡水柱波能量转换器的流体动力学分析。

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The primary efficiency of the Oscillating Water Column (OWC) Wave Energy Converter (WEC) device in the stepped sea bottom condition is investigated using both experimental and numerical approaches. Wave flume tests were undertaken to investigate the hydrodynamic behaviour of the device in regular waves. A 2D numerical model was developed in the open source computational fluid dynamics (CFD) software package OpenFOAM implementing the fully non-linear Reynolds Averaged Navier-Stokes (RANS) equations to simulate the wave power absorption and wave structure interactions. The numerical results have been validated against the experimental data. The influence of the wave characteristic as well as damping of the power take-off unit on the performance of the device, wave reflection coefficient and the energy dissipation rate is evaluated using the results obtained from the numerical simulations. Furthermore, as was proved in previous studies that the application of the stepped sea bottom condition might increase the efficiency of the OWC devices, the CFD simulation results have been implemented to present and discuss about the power absorption mechanism as well as the flow pattern characteristics in the vicinity area of the step. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用实验和数值方法研究了阶梯式海底条件下的振荡水柱(OWC)波能转换器(WEC)的主要效率。进行了波浪水槽测试以研究该设备在规则波浪中的流体动力学行为。在开源计算流体动力学(CFD)软件包OpenFOAM中开发了一个二维数值模型,该模型实现了完全非线性的雷诺平均Navier-Stokes(RANS)方程,以模拟波浪能量吸收和波浪结构相互作用。数值结果已经针对实验数据进行了验证。使用数值模拟获得的结果,评估了波动特性以及取力器阻尼对设备性能,波反射系数和能量耗散率的影响。此外,如先前的研究所证明的,阶梯式海底条件的应用可能会提高OWC装置的效率,已执行CFD仿真结果来介绍和讨论功率吸收机理以及流场特性。步骤的附近区域。 (C)2018 Elsevier Ltd.保留所有权利。

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