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首页> 外文期刊>Journal of Marine Science and Engineering >Using Flexible Blades to Improve the Performance of Novel Small-Scale Counter-Rotating Self-Adaptable Wave Energy Converter for Unmanned Marine Equipment
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Using Flexible Blades to Improve the Performance of Novel Small-Scale Counter-Rotating Self-Adaptable Wave Energy Converter for Unmanned Marine Equipment

机译:使用挠性叶片提高新型小型反旋转自适应波能转换器在无人船用设备上的性能

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Unmanned marine equipment has been increasingly developed for open seas. The lack of efficient and reliable power supply is currently one of the bottlenecks restricting the practical application of these devices. In order to provide a viable power supply method for unmanned marine equipment, such as sonic buoys and sea robots, we originally propose a novel small-scale flexible blade wave energy converter (WEC) based on self-adaptable counter-rotating operation mechanism. The flexible blade WEC is designed on the basis of the rigid blade WEC with the caging device. This paper identifies the key factors affecting WEC performance through theoretical analysis. According to the numerical simulation analysis, the output mechanical power of the double-layer absorber is 12.8 W, and the hydraulic efficiency is 36.3%. The results of the verification experiment show that the peak power of WEC is 5.8 W and the average power is 3.2 W. The WEC with 65Mn flexible blade under most experimental conditions has the best performance when the blade thickness is 0.10 mm. The study shows that the new generation WEC can effectively overcome the excessive fluctuation of the output power of the previous generation WEC. The output power curve of the novel WEC is relatively smooth, which is conducive to its smooth operation and subsequent utilization and storage of electrical energy.
机译:无人船用设备已被越来越多地开发用于公海。当前缺乏有效和可靠的电源是限制这些设备的实际应用的瓶颈之一。为了给声波浮标和海洋机器人等无人船用设备提供可行的供电方法,我们最初提出了一种基于自适应反向旋转操作机制的新型小型柔性叶片波能量转换器(WEC)。柔性刀片WEC是在带有固定装置的刚性刀片WEC的基础上设计的。本文通过理论分析确定了影响WEC性能的关键因素。根据数值模拟分析,双层吸收器的输出机械功率为12.8 W,水力效率为36.3%。验证实验结果表明,WEC的峰值功率为5.8 W,平均功率为3.2W。当刀片厚度为0.10 mm时,在大多数实验条件下使用65Mn柔性刀片的WEC的性能最佳。研究表明,新一代WEC可以有效克服上一代WEC的输出功率过大波动。新型WEC的输出功率曲线比较平滑,有利于其平稳运行以及随后的电能利用和存储。

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