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Comparative study on power capture performance of oscillating-body wave energy converters with three novel power take-off systems

机译:三种新型取力系统对摆波能量转换器功率捕获性能的比较研究

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Converting persistent and renewable wave energy into electricity has been a research focus in recent years. The oscillating-body wave energy converter (WEC) is a promising approach, especially for offshore areas. However, conventional oscillating-body WECs with linear power take-off (PTO) systems are less efficient under off-resonance conditions and have a narrow power capture bandwidth, which has inhibited the commercial application of wave energy. In order to enhance the power capture performance, this study examined oscillating-body WECs with three new types of PTO systems: bistable impulsive PTO, coupled linear PTO, and coupled bistable PTO. Governing equations for the heave motion of a WEC were established based on the linear potential theory by coupling the buoy and PTO systems and were numerically calculated with the fourth-order Runge-Kutta method. The influence of PTO parameters such as the spring constant, stable equilibrium position, and mass ratio on the power capture ratio was investigated. The differences among the WECs with different PTOs were analysed to determine the optimum device. Compared with the linear PTO system, the WEC with the bistable impulse PTO system enhanced the power capture ratio for low-frequency regular waves, and WECs with coupled linear or coupled bistable PTO systems increased the power capture ratio for low-frequency regular waves and expanded the power capture spectrum bandwidth when proper PTO parameters were applied. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,将持久的可再生波浪能转化为电能一直是研究的重点。振荡体波能转换器(WEC)是一种很有前途的方法,特别是对于近海地区。但是,传统的带有线性功率输出(PTO)系统的振荡体WEC在非谐振条件下效率较低,并且功率捕获带宽较窄,这已抑制了波能的商业应用。为了提高功率捕获性能,本研究使用三种新型的PTO系统检查了振荡体WEC:双稳态脉冲PTO,耦合线性PTO和耦合双稳态PTO。基于线性势能理论,通过浮标和PTO系统的耦合,建立了WEC升沉运动的控制方程,并用四阶Runge-Kutta方法进行了数值计算。研究了取力器参数如弹簧常数,稳定的平衡位置和质量比对功率捕获率的影响。分析了具有不同PTO的WEC之间的差异,以确定最佳设备。与线性PTO系统相比,具有双稳态脉冲PTO系统的WEC增强了低频规则波的功率捕获率,而具有线性或耦合双稳态PTO系统的WEC则增加了低频规则波的功率捕获率并扩大了应用适当的PTO参数时的功率捕获频谱带宽。 (C)2016 Elsevier Ltd.保留所有权利。

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