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Ocean wave energy harvesting with a piezoelectric coupled buoy structure

机译:压电耦合浮标结构的海浪能量收集

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An expedient piezoelectric coupled buoy energy harvester from ocean waves is developed. The harvester is made of several piezoelectric coupled cantilevers attached to a floating buoy structure, which can be easily suspended in the intermediate and deep ocean for energy harvesting. In the buoy structure, a slender cylindrical floater is attached on a large sinker. The energy harvesting process is realized by converting the transverse ocean wave energy to the electrical energy via the piezoelectric patches mounted on the cantilevers fixed on the buoy. A smart design of the buoy structure is developed to increase the energy harvesting efficiency by investigation of the effects of the sizes of the floater and the sinker. A numerical model is presented to calculate the generated electric power from buoy energy harvester. The research findings show that up to 24W electric power can be generated by the proposed expedient buoy harvester with the length of the piezoelectric cantilevers of 1 m and the length of the buoy of 20 m. The technique proposed in this research can provide an expedient, feasible and stable energy supply from the floating buoy structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:开发了一种方便的海浪压电耦合浮标能量采集器。收割机由连接到浮标浮标结构的几个压电耦合悬臂制成,可以轻松地将其悬吊在中层和深海中以进行能量收集。在浮标结构中,细长的圆柱形浮子安装在大型沉降片上。通过将横向海浪能量通过安装在固定在浮标上的悬臂上的压电片转换为电能来实现能量收集过程。通过研究浮子和沉降片尺寸的影响,开发了浮标结构的智能设计以提高能量收集效率。提出了一个数值模型来计算浮标能量收集器产生的电力。研究发现表明,所提出的权宜之举的浮标收集器可产生高达24W的电力,压电悬臂的长度为1 m,浮标的长度为20 m。这项研究中提出的技术可以从浮标结构中提供方便,可行和稳定的能源供应。 (C)2015 Elsevier Ltd.保留所有权利。

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