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Experimental Study of a Lift-Type Wave Energy Converter Rotor in a Freewheeling Mode

机译:续流模式的升力型波能换能器转子的实验研究

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In pursuit of energy harvesting from ocean waves, our recent progress on studying wave interaction with a lift-type rotor is discussed in this paper. The particular focus is on the characterization of the rotor's unidirectional responsiveness in waves. The rotor consists of six hydrofoil blades in two sets. One blade set has three blades laid out as a vertical-axis wind turbine of the Darrieus type. The other blade set has three blades configured like a Wells turbine. In combination, the formed rotor can be driven by flows in any direction to perform a unidirectional rotation about its vertically mounted shaft. This unidirectional responsiveness of the rotor also holds in waves, making the rotor an effective device for wave energy conversion. For the parametric study of the rotor, hydrofoil blades using different cross-sectional profiles and chord lengths have been employed to configure the rotor. The rotor was then tested in a wave flume under various wave conditions in a freewheeling mode. Experimental results were analyzed and discussed. The yielded research findings will greatly enhance the fundamental understanding of the rotor performance in waves and effectively guide the prototype rotor development for practical applications.
机译:为了追求从海浪中收集能量,本文讨论了我们在研究与提升式旋翼相互作用时的最新进展。特别关注的是转子在波中的单向响应特性。转子由两组中的六个水翼叶片组成。一个叶片组具有三个叶片,布置为Darrieus型的垂直轴风力涡轮机。另一个叶片组具有三个叶片,这些叶片的配置类似于韦尔斯涡轮机。组合地,所形成的转子可以被沿任何方向的流动驱动以绕其竖直安装的轴执行单向旋转。转子的这种单向响应也保持在波浪中,使转子成为用于波能转换的有效装置。为了对转子进行参数研究,已采用具有不同横截面轮廓和弦长的水翼叶片来配置转子。然后,在续流模式下,在各种波浪条件下的波浪槽中测试转子。实验结果进行了分析和讨论。产生的研究结果将大大增强对波浪中转子性能的基本了解,并有效指导实际应用中转子原型的开发。

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