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Wind Energy Harvesting Utilizing Biaxially Oriented Piezoelectric Polyvinylidenefluoride Film

机译:利用双向拉伸压电聚偏二氟乙烯薄膜的风能收集

摘要

ABSTRACTudMATTHEW JOHNSON KENNEDY: Wind Energy Harvesting Utilizing Biaxially Oriented Piezoelectric Polyvinylidenefluoride Film ud(Under the direction of Josh Gladden)ududWith the growing concern over fossil fuels as a finite source of fuel and as a hazard to the environment, society has developed a growing interest in the use of renewable energy. Advancements in solar, nuclear, geothermal, wind, and vibrational energy harvesting, to name a few, have made the concept of using renewables as a main source of energy more feasible. The research and experimentation conducted for this thesis focused on analyzing the practicality of the future implementation of Biaxially Oriented Piezoelectric Polyvinylidenefluoride in the wind energy harvesting industry. The experiment consisted of data collection and analysis of power output as a function of wind speed and was conducted in the low speed wind tunnel in the National Center for Physical Acoustics at the University of Mississippi. The results from the experiment show that, for the specific dimensions of film used, Polyvinylidenefluoride film had a low power output under wind velocities of approximately five to seven meters per second. However, the future implications of PVDF may not be ruled out, for this experiment may pave the way for a new range of specific experiments.ud
机译:摘要 udMATTHEW JOHNSON KENNEDY:利用双轴取向压电聚偏二氟乙烯薄膜 ud(在Josh Gladden的指导下) ud ud随着对化石燃料作为一种有限的燃料来源和对环境的危害,社会日益关注人们对可再生能源的使用越来越感兴趣。太阳能,核能,地热能,风能和振动能的收集等方面的进步使使用可再生能源作为主要能源的概念变得更加可行。本文进行的研究和实验着眼于分析双轴取向压电聚偏二氟乙烯在风能收集行业中未来应用的可行性。该实验包括数据收集和功率输出与风速的关系分析,是在密西西比大学国家物理声学中心的低速风洞中进行的。实验结果表明,对于所用薄膜的特定尺寸,聚偏二氟乙烯薄膜在大约每秒五到七米的风速下具有低功率输出。但是,可能不能排除PVDF的未来影响,因为该实验可能为新范围的特定实验铺平了道路。

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    Kennedy Matthew;

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  • 年度 2015
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