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Numerical and experimental study on a hemispheric point-absorber-type wave energy converter with a hydraulic power take-off system

机译:带有液压动力输出系统的半球形点吸收式波能换能器的数值和实验研究

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摘要

This study examined the performance of a hemispherical point-absorber wave energy converter (WEC) with a hydraulic power take-off (PTO) system. The hydraulic PTO system for power generation was modeled as an approximate coulomb damping force, which was recently proposed to reduce numerical error. To examine the hydrodynamic performance of the WEC, a three-dimensional frequency-domain numerical wave tank technique was adopted, in which the wave radiation problem and diffraction problem for a hemispherical buoy were solved in succession to obtain the hydrodynamic coefficients. The Cummins equation was also adopted to simulate the buoy displacement and extracted wave power in the time domain. For comparison, a three-dimensional wave tank experiment was conducted. Various viscous damping and energy loss from WEC system and hydraulic cylinder pressure of the PTO system were measured from the experimental results, and these values were added to the governing equation of buoy motion. Therefore, the final numerical model of the WEC system contained the viscous damping and hydraulic PTO forces as well as the potential-flow-based hydrodynamic coefficients. Using the developed numerical model, the hemispheric buoy displacement and extracted wave power were calculated for various hydraulic pressures and input wave conditions to determine the optimal conditions for the maximum wave power. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究检查了带有液压动力输出(PTO)系统的半球形点吸收波能量转换器(WEC)的性能。用于发电的液压PTO系统被建模为近似库仑阻尼力,最近有人提出减少数值误差。为了检验WEC的水动力性能,采用了三维频域数值波箱技术,在该技术中,连续求解半球形浮标的波辐射问题和衍射问题,以获得水动力系数。康明斯方程还被用来模拟浮标位移和时域提取的波功率。为了进行比较,进行了三维波箱实验。根据实验结果测量了WEC系统的各种粘性阻尼和能量损失以及PTO系统的液压缸压力,并将这些值添加到浮标运动的控制方程中。因此,WEC系统的最终数值模型包含粘性阻尼和液压PTO力,以及基于势流的流体动力系数。使用开发的数值模型,计算了各种液压压力和输入波浪条件下的半球浮标位移和提取的波浪功率,以确定最大波浪功率的最佳条件。 (C)2018 Elsevier Ltd.保留所有权利。

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