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Combined effects of raft length ratio and structural flexibility on power capture performance of an interconnected-two-raft wave energy converter

机译:筏长比和结构柔性对互联式两筏波浪能转换器功率捕获性能的综合影响

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The power capture performance of an interconnected two-raft wave energy converter (WEC) is investigated in this paper. The equations of motion for the hinged WEC are established using a discrete-module-beam-bending based hydroelasticity method. A mathematical model is then derived for the optimization of power-takeoff systems , which is capable of taking into account both different raft length ratios and structural flexibility levels. Based on this mathematical model, the combined effects of raft length ratios and structural flexibility on the power absorption of the hinged two-raft WEC are explored in detail. A small fore-aft raft length ratio is beneficial to power capture in relatively short waves and the performance is further enhanced by the increase of structural flexibility. For relatively long waves, two rafts of equal length may be the optimal condition while the energy absorption is weakened by the structural flexibility. The critical wave number (normalized by the length scale of the rafts) categorizes the effect of structural flexibility on power capture into constructive (larger wave number than the critical value) and destructive (smaller wave number) regions and it is not very sensitive to geometric features of the WEC such as the width of two rafts and the gap between them.
机译:本文研究了一个互连的两筏波浪能量转换器(WEC)的功率捕获性能。铰接式WEC的运动方程是使用基于离散模块梁弯曲的水弹性方法建立的。然后导出数学模型以优化动力输出系统,该模型能够同时考虑不同的筏长比和结构柔性水平。在此数学模型的基础上,详细研究了筏长比和结构柔性对铰接式两筏WEC功率吸收的综合影响。较小的前-后筏长比有利于在相对短的波浪中捕获功率,并且通过增加结构的灵活性进一步提高了性能。对于相对长的波浪,两个等长的木筏可能是最佳条件,而结构的柔韧性会削弱能量吸收。临界波数(通过筏的长度尺度进行归一化)将结构柔韧性对功率捕获的影响分为构造性(比临界值大的波数)和破坏性(较小的波数)区域,并且对几何不是很敏感WEC的特征,例如两个木筏的宽度以及它们之间的间隙。

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