Electricity Generation by Wind Using Resonance and Piezoelectric Effect

Rupali R. Rahangdale, Bhushan G. Gurnule, Mayur K. Bhoskar, Aarti S. Dupare, Vipin V. Jais
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Abstract

Faraday's law of Electromagnetic Induction is the working principle behind A.C.-D.C. generators, which contributes a major part of the generated electricity utilized today. However, the Photoelectric Effect used in Solar cells is also a useful source of renewable energy produced from the sun. In this research work, we have tried to generate electricity from the concept of Resonance and Piezoelectric Effect. To achieve the goal, we have used a thin strip of stretch-resistant material which naturally has the property of resisting the applied stretching force. The length of this stretch-resistant material will be set up so that the incoming airflow will make the thin strip vibrate at its resonant frequency. This will create high-amplitude mechanical vibrations on the thin strip. Now, these vibrations will be passed to the piezoelectric material. Piezoelectric materials have the property to exhibit the piezoelectric effect, which will convert the high amplitude mechanical vibrations passed by thin strips to the piezoelectric material into electrical discharge and hence, we generated electricity from wind using Piezoelectric Effect & Resonance. Due to less moving parts in our setup, it is theoretically more efficient in high wind conditions where a windmill usually fails to work. The only moving part is the thin strip which moves in a flapping motion hence, the generator is named a flapping generator. Even though the generated electricity is in a lesser amount, we can create an array of some such setups to increase the output electricity (as we do in solar energy generation) as per our requirement.
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利用共振和压电效应的风力发电
法拉第电磁感应定律是交直流发电机背后的工作原理,它贡献了今天使用的大部分发电。然而,太阳能电池中使用的光电效应也是太阳产生的可再生能源的有用来源。在这项研究工作中,我们尝试从共振和压电效应的概念来发电。为了实现这一目标,我们使用了一种天然具有抵抗施加拉伸力的抗拉伸材料的薄条。这种抗拉伸材料的长度将被设定,以便进入的气流将使薄条以其共振频率振动。这将在薄带上产生高振幅的机械振动。现在,这些振动会传递给压电材料。压电材料具有压电效应的特性,将细条传递给压电材料的高振幅机械振动转化为放电,因此,我们利用压电效应和共振来发电。由于我们的设置中运动部件较少,理论上在风力较大的情况下效率更高,而风车通常无法工作。唯一的运动部分是作扑动运动的薄条,因此称为扑动发生器。即使产生的电量较少,我们也可以根据需要创建一些这样的设置来增加输出电量(就像我们在太阳能发电中所做的那样)。
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