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一种基于磁球的摩擦电-电磁混合水波能量收集器。

A Hybridized Triboelectric-Electromagnetic Water Wave Energy Harvester Based on a Magnetic Sphere.

作者信息

Wu Zhiyi, Guo Hengyu, Ding Wenbo, Wang Yi-Cheng, Zhang Lei, Wang Zhong Lin

机构信息

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences , Beijing 100083 , China.

School of Materials Science and Engineering , Georgia Institute of Technology , Atlanta , Georgia 30332-0245 , United States.

出版信息

ACS Nano. 2019 Feb 26;13(2):2349-2356. doi: 10.1021/acsnano.8b09088. Epub 2019 Jan 29.

Abstract

Blue energy harvested from ocean waves is an important and promising renewable energy source for sustainable development of our society. Triboelectric nanogenerators (TENGs) and electromagnetic energy harvesters (EMGs) both are considered promising approaches for harvesting blue energy. In this work, a hybridized triboelectric-electromagnetic water wave energy harvester (WWEH) based on a magnetic sphere is presented. A freely rolling magnetic sphere senses the water motion to drive the friction object sliding on a solid surface for TENG back and forth. At the same time, two coils transform the motion of the magnetic sphere into electricity according to the electromagnetic induction effect. For harvesting the blue energy from any direction, the electrodes of the TENG are specified as the Tai Chi shape, the effective of which is analyzed and demonstrated. Based on a series of experimental comparisons, the two friction layers and the two coils are specified to be connected in parallel and in series, respectively. A paper-based supercapacitor of ∼1 mF is fabricated to store the generated energy. The WWEH is placed on a buoy to test in Lake Lanier. During 162 s, the supercapacitor can be charged to 1.84 V, the electric energy storage in it is about 1.64 mJ. This work demonstrates that the WWEH can be successfully used for driving distributed, self-powered sensors for environmental monitoring.

摘要

从海浪中获取的蓝色能源是社会可持续发展的一种重要且有前景的可再生能源。摩擦纳米发电机(TENGs)和电磁能量收集器(EMGs)都被认为是获取蓝色能源的有前景的方法。在这项工作中,提出了一种基于磁球的摩擦电 - 电磁水波能量收集器(WWEH)。一个自由滚动的磁球感知水的运动,以驱动摩擦物体在固体表面上滑动,使TENG来回工作。同时,两个线圈根据电磁感应效应将磁球的运动转化为电能。为了从任何方向获取蓝色能源,TENG的电极被设计为太极形状,并对其有效性进行了分析和论证。基于一系列实验比较,确定两个摩擦层和两个线圈分别并联和串联连接。制作了一个约1 mF的纸质超级电容器来存储产生的能量。WWEH被放置在一个浮标上在拉尼尔湖进行测试。在162秒内,超级电容器可以充电到1.84 V,其存储的电能约为1.64 mJ。这项工作表明,WWEH可以成功用于驱动分布式自供电传感器进行环境监测。

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