摩擦电效应
材料科学
风速
风力发电
阻力
涡轮机
发电机(电路理论)
螺旋桨
发电
变速风力涡轮机
海洋工程
汽车工程
机械工程
航空航天工程
电压
电气工程
气象学
永磁同步发电机
功率(物理)
物理
复合材料
工程类
量子力学
作者
Yuqi Wang,Jianlong Wang,Hengyu Li,Qi Gao,Mingkang Zhu,Tenghong Su,Yingting Wang,Xiaojun Cheng,Tinghai Cheng
标识
DOI:10.1021/acsami.4c05790
摘要
In recent years, the triboelectric-electromagnetic hybrid generator (TEHG) has been widely studied. However, the problems of unsteady output and high starting wind speed of traditional TEHG in the wind energy environment have not been effectively solved. This work introduces an innovative solution in the form of a steady output triboelectric-electromagnetic hybrid generator (SO-TEHG) with variable drag turbine blades. The SO-TEHG integrates the energy management circuit to output steady electric energy under random wind conditions. In addition, the integration of variable drag turbine blades with the triboelectric nanogenerator (TENG) reduces the wind speed threshold required for SO-TEHG activation. In comparison to the traditional turbine blades, which necessitate a minimum wind speed of 3 m/s, the SO-TEHG's innovative design allows it to commence power generation at a lower 2 m/s wind speed, producing an additional output of 50 V. This enhanced starting capability in mild breezes positions the SO-TEHG as an ideal power source for applications. In practical farmland settings, experimental results conclusively demonstrate the SO-TEHG's ability to successfully activate soil hygrothermographs and hydrogen sensors. As a steady power source driven by gentle winds, the SO-TEHG holds tremendous promise for advancing smart agriculture.
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