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FLUTTERING AMPLITUDE AMPLIFICATION BY UTILIZING FLAPPING MOMENT IN FLUTTER-DRIVEN TRIBOELECTRIC NANOGNERATOR

机译:利用颤动驱动的摩擦电纳米载体中的拍打力矩振荡振幅放大

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Flutter-driven triboelectric nanogenerator (FTENG) is one of the most promising methods to harvest small-scale wind energy. Wind causes self-fluttering motion of a flag in the FTENG to generate electricity by contact electrification. A lot of studies have been conducted to enhance the energy output by increasing the surface charge density of the flag, but only a few researches tried to increase the converting efficiency by enlarging the flapping motion. In this study, we show that by simply replacing the rigid flagpole in the FTENG with a flexible flagpole, the energy conversion efficiency is augmented and the energy output is enhanced. It is found that when the flag flutters, the flagpole also undergoes aerodynamic force. The lift force generated from the fluttering flag applies a periodic rotational moment on the flagpole, and causes the flagpole to vibrate. The vibration of the flagpole, in turn amplifies the flutter of the flag. Both the fluttering dynamics of the flags with rigid and flexible flagpoles have been recorded by a high-speed camera. When the flag was held by a flexible flagpole, the fluttering amplitude and the contact area between the flag and electrode plates were increased. The energy enhancement increased as the flow velocity increased and the enhancement can be 113 times when the wind velocity is 10 m/s. The thickness of the flagpole was investigated. An optimal output of open-circuit voltage reaching 1128 V(peak-to-peak value) or 312.40 V(RMS value), andshort-circuit current reaching 127.67 μA (peak-to-peak value) or 31.99 μA (RMS value) at 12.21 m/s flow velocity was achieved. This research presents a simple design to enhance the output performance of an FTENG by amplifying the fluttering amplitude. Based on the performance obtained in this study, the improved FTENG has the potential to apply in a smart city for driving electronic devices as a power source for IoT applications.
机译:抖动驱动的摩擦纳米电磁炉(Fteng)是收获小规模风能的最有希望的方法之一。风导致FTENG中标志的自颤动运动通过接触电气发电。已经进行了许多研究以通过增加旗帜的表面电荷密度来增强能量输出,但只有少数研究试图通过扩大拍打动作来提高转换效率。在这项研究中,我们表明,通过简单地用柔性旗杆更换FTENG中的刚性旗杆,可以增强能量转换效率,并且能量输出增强。发现,当旗帜浮动时,旗杆也经过空气动力。从翼形标志产生的提升力适用于旗杆上的周期性的旋转力矩,并使旗杆振动。旗杆的振动,又可以放大标志的颤动。具有刚性和柔性旗杆的标志的浮动动态都被高速摄像机记录。当通过柔性旗杆保持旗帜时,振动幅度和标志和电极板之间的接触面积增加。随着流速增加而增强的能量增强增加,而且增强可以是风速为10米/秒的113次。研究了旗杆的厚度。开路电压的最佳输出达到1128 V(峰值到峰值)或312.40 V(rms值),达到127.67μA的312.67μA(峰值峰值)或31.99μA(RMS值)实现了12.21米/秒的流速。本研究提出了一种简单的设计,通过放大振荡幅度来增强FTENG的输出性能。基于本研究中获得的性能,改进的FTENG有可能在智能城市应用于驱动电子设备作为IOT应用的电源。

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