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Hydrodynamic performance evaluation of a wave energy converter with two concentric vertical cylinders by analytic solutions and model tests

机译:解析解与模型试验评估两个同心竖圆柱波能换能器的水动力性能

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In this paper, the hydrodynamic performance of a two-concentric-cylindrical-body WEC (Wave Energy Converter) is investigated through a systematic parametric study by using analytical solutions and model tests. The two-body WEC generates power by LEG (linear electric generator) through the relative heave motion between the inner and outer buoys. In order to maximize the relative heave motions between the two buoys, resonance of each buoy was used. As a means of finding its maximum hydrodynamic efficiency, the matched eigenfunction expansion method (MEEM) was applied to obtain the analytic solutions under the assumption of linear potential theory. The numerical results are validated through comparisons with a series of model tests conducted by authors in a 2-D wave tank at Jeju National University. Based on the case study, several design strategies that can further enhance the PTO (Power take-off) efficiency are proposed, including the optimal PTO damping and intentional mismatching of heave natural frequencies of the two buoys and the peak frequency of target wave spectrum. The intentional mismatching strategy, in particular, can increase high-quality extracted power for broader wave conditions, which is a big advantage in designing the proposed WEC-LEG system.
机译:在本文中,通过使用分析解决方案和模型测试,通过系统的参数研究,研究了两个同心圆柱体WEC(波浪能量转换器)的水动力性能。两体WEC通过内部浮标和外部浮标之间的相对升沉运动,通过LEG(线性发电机)发电。为了使两个浮标之间的相对升沉运动最大化,使用了每个浮标的共振。作为找到其最大流体动力效率的一种方法,在线性势能理论的假设下,采用匹配的本征函数展开法(MEEM)来获得解析解。通过与作者在济州国立大学二维水箱中进行的一系列模型测试进行比较,验证了数值结果。基于案例研究,提出了几种可以进一步提高PTO(取力器)效率的设计策略,包括最佳的PTO阻尼和两个浮标的升沉固有频率的故意失配以及目标波谱的峰值频率。特别是有意的失配策略可以在更宽的波浪条件下提高高质量的提取功率,这在设计提出的WEC-LEG系统中具有很大的优势。

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