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WIND-GENERATED ELECTRICAL ENERGY USING FLEXIBLE PIEZOELECTRIC MATERIALS

机译:柔性压电材料产生的风能

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摘要

Electrical energy can be harvested from the wind using flag-like membranes (termed piezoelements or bimorphs) composed of flexible piezoelectric materials. The flapping of the membrane caused by the wind induces bending stresses that generate a voltage across electrodes positioned on the surfaces of the material via the piezoelectric properties of the material. The best results to date using PVDF (polyvinyledene fluoride) as the piezoelectric material are 10 mW of dc power (50 Vdc across 250 kΩ) obtained from a single bimorph element (size about 8"X11"X 0.02") flapping a frequency of 5 Hz in a wind speed of 15 mph. The overall efficiency was low (estimated at 0.1%) and to improve this figure, three specific areas of improvement are targeted. The efficiency of the piezoelement in converting wind energy into stored elastic energy will be optimized by determining the best geometry and dimensions for the element in conjunction with upwind bluff bodies using wind tunnel tests. A novel circuit, termed a quasi-resonant rectifier, for extracting the electric energy from the piezoelectric has been developed which can extract several times more power from the piezoelement than a conventional full-wave rectifier. A number of piezoelectric and electrostrictive materials including PZT fibers embedded in an epoxy matrix (termed active fiber composites or macro fiber composites) which may have higher generation efficiencies than PVDF will be examined for this application.
机译:可以使用由柔性压电材料组成的旗状膜(称为压电元件或双压电晶片)从风中收集电能。风引起的膜振打会引起弯曲应力,弯曲应力会通过材料的压电特性在位于材料表面的电极上产生电压。迄今为止,使用PVDF(聚偏二氟乙烯)作为压电材料的最佳结果是从单个双压电晶片元件(尺寸大约为8“ X11” X 0.02“)拍打频率为5的10 mW直流功率(跨250kΩ的50 Vdc)。在15 mph的风速下为Hz,总效率很低(估计为0.1%),要改善此数字,要针对三个特定的改进领域,优化压电元件将风能转换为存储的弹性能的效率通过使用风洞测试确定元件的最佳几何形状和尺寸以及迎风钝体,已经开发出一种新型电路,称为准谐振整流器,用于从压电体中提取电能,该电路可以提取多倍的功率压电和电致伸缩材料,包括嵌入在环氧基质中的PZT纤维(称为活性纤维复合材料或复合材料)可能会比PVDF具有更高的发电效率的Acro纤维复合材料)用于此应用。

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