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Capture Performance of A Multi-Freedom Wave Energy Converter with Different Power Take-off Systems 被引量:1
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作者 HUANG Shu-ting SHI Hong-da DONG Xiao-chen 《China Ocean Engineering》 SCIE EI CSCD 2019年第3期288-296,共9页
Among the wave energy converters (WECs), oscillating buoy is a promising type for wave energy development in offshore area. Conventional single-freedom oscillating buoy WECs with linear power take-off (PTO) system are... Among the wave energy converters (WECs), oscillating buoy is a promising type for wave energy development in offshore area. Conventional single-freedom oscillating buoy WECs with linear power take-off (PTO) system are less efficient under off-resonance conditions and have a narrow power capture bandwidth. Thus, a multi-freedom WEC with a nonlinear PTO system is proposed. This study examines a multi-freedom WEC with 3 degrees of freedom: surge, heave and pitch. Three different PTO systems (velocity-square, snap through, and constant PTO systems) and a traditional linear PTO system are applied to the WEC. A time-domain model is established using linear potential theory and Cummins equation. The kinematic equation is numerically calculated with the fourth-order Runge–Kutta method. The optimal average output power of the PTO systems in all degrees of freedom are obtained and compared. Other parameters of snap through PTO are also discussed in detail. Results show that according to the power capture performance, the order of the PTO systems from the best to worst is snap through PTO, constant PTO, linear PTO and velocity-square PTO. The resonant frequency of the WEC can be adjusted to the incident wave frequency by choosing specific parameters of the snap through PTO. Adding more DOFs can make the WEC get a better power performance in more wave frequencies. Both the above two methods can raise the WEC’s power capture performance significantly. 展开更多
关键词 oscillating BUOY wave energy converter nonlinear power take-off multi-freedom power CAPTURE
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基于非线性能量俘获机制的直驱浮子式波浪能发电装置研究 被引量:6
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作者 肖晓龙 肖龙飞 李扬 《振动与冲击》 EI CSCD 北大核心 2018年第2期156-162,共7页
以直驱振荡浮子式波浪能发电装置为研究对象,探讨在应用线性和非线性能量俘获机制的情况下,装置在不规则波中的能量俘获情况。基于势流理论,针对垂荡运动,建立浮子与电机的耦合运动方程,应用四阶龙格库塔法数值求解,对非线性能量俘获机... 以直驱振荡浮子式波浪能发电装置为研究对象,探讨在应用线性和非线性能量俘获机制的情况下,装置在不规则波中的能量俘获情况。基于势流理论,针对垂荡运动,建立浮子与电机的耦合运动方程,应用四阶龙格库塔法数值求解,对非线性能量俘获机制中稳定平衡位置的影响进行研究,对线性和非线性装置在不同谱峰频率的不规则波中能量俘获功率的差异进行分析。结果表明:适当选取稳定平衡位置,非线性装置可以在低频时比线性装置俘获更多能量,且俘获能量频谱带宽更宽,更适应于实际海况中波浪能量俘获。 展开更多
关键词 波浪能发电装置 浮子 非线性能量俘获机制 稳定平衡位置 能量俘获功率
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