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Hydrodynamic performance of an offshore-stationary OWC device with a horizontal bottom plate: Experimental and numerical study

机译:具有水平底板的海上固定式OWC设备的水动力性能:实验和数值研究

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摘要

As an example of multipurpose utilization of marine structures, the hydrodynamic performance of an offshore-stationary Oscillating Water Column (OWC) device with an immersed horizontal bottom plate was investigated through both experimental tests and numerical simulations. Based on the open source package OpenFOAM and toolbox waves2Foam, the numerical results were validated by comparing them with experimental data. The effects of the opening ratio (a), plate length (D), relative opening (e), and water depth on the energy absorption efficiency, transmission coefficient, and energy dissipation coefficient were examined over a wide range of wave conditions. The results show that a relatively long bottom plate and small opening ratio is beneficial for both the energy extraction and wave-damping ability, especially for long waves. Increasing the relative vertical opening considerably improves the performance of multipurpose OWC devices. Moreover, the optimal structure configuration is found for parameters a = 0.65% , D = 2B (B is the breadth of chamber), and epsilon = 1/2.
机译:作为海洋结构的多用途利用的一个例子,通过实验测试和数值模拟研究了具有沉入式水平底板的海上固定振荡水柱(OWC)装置的水动力性能。基于开源软件包OpenFOAM和工具箱waves2Foam,通过将其与实验数据进行比较来验证数值结果。在宽广的波浪条件下,研究了开口率(a),板长(D),相对开口(e)和水深对能量吸收效率,传输系数和能量耗散系数的影响。结果表明,相对较长的底板和较小的开口率既有利于能量提取,又有利于抑制波浪,特别是对于长波浪。增加相对垂直开口会大大提高多功能OWC设备的性能。此外,对于参数a = 0.65%,D = 2B(B是腔的宽度)和epsilon = 1/2可以找到最佳的结构配置。

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