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Application of a flexible device coating with piezoelectric paint for harvesting wave energy

机译:压电涂料柔性器件涂层在收集波能中的应用

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This study proposed a painted flexible piezoelectric device (FPED) for harvesting wave energy. The painted FPED had a laminated structure consisting of an elastic material and a piezoelectric paint. The device could be easily deformed by an external force such as wind, wave, current, or mechanical vibration, and it could generate electrical power from an ambient, non-utilised energy source. The results revealed the mechanical deformation and electrical performance of the painted FPED excited by wave conditions. They also clarified the influence of some key parameters, such as the submerged depth, wave steepness, aspect ratio, actuator pattern (unimorph and bimorph), and thickness of the painted piezo-material and elastomer on the output voltage generated by a painted FPED excited by various wave forces, heights and periods. Moreover, a theoretical model was proposed, and the results were in good agreement with the experimental results under several wave conditions. The electrical power in real sea states was estimated by the theoretical model. The electric power could be stored in batteries, and both the monitoring sensors and ocean environmental devices could be triggered and activated to work for practical applications in real sea states.
机译:这项研究提出了一种涂漆的柔性压电装置(FPED),用于收集波能。涂漆的FPED具有由弹性材料和压电涂料组成的层压结构。该设备很容易因外力(例如风,波浪,电流或机械振动)而变形,并且可能从周围的未利用能源中产生电能。结果揭示了在波浪条件下激发的涂漆FPED的机械变形和电性能。他们还阐明了一些关键参数的影响,例如浸没深度,波陡度,长宽比,执行器模式(单压电晶片和双压电晶片)以及涂漆的压电材料和弹性体的厚度对涂漆的FPED激发产生的输出电压的影响。受到各种波浪力,高度和周期的影响。此外,提出了一个理论模型,其结果与几种波浪条件下的实验结果吻合良好。通过理论模型估算了真实海况下的电功率。电力可以存储在电池中,并且监视传感器和海洋环境设备都可以被触发和激活以在实际海况下的实际应用中工作。

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