摩擦电效应
纳米发生器
风速计
文丘里效应
材料科学
气流
能量收集
汽车工程
机械能
功率(物理)
航程(航空)
功率密度
能量(信号处理)
湿度
扭矩
工艺工程
可再生能源
流量(数学)
环境科学
压力传感器
发电
废气再循环
高效能源利用
机械工程
能量转换效率
大气压力
能量转换
一氧化碳
风力发电
作者
Fei Zhang,P M F M R Ji,Jiantong Gao,Hui Li,Rihan Da,Tengfei Zhou,Xiaobo Gao,Zijie Xu,Zhong Lin Wang,Baodong Chen
摘要
ABSTRACT Industrial exhaust carries abundant recyclable airflow energy, yet its complex, highly fluctuating and unstable characteristics hinder efficient harvesting. Here, we present a Venturi‐induced triboelectric nanogenerator (VI‐TENG), which leverages the pressure gradient generated by the Venturi effect to achieve high‐efficiency conversion of airflow energy into electricity. It is important that the rolling contact design of VI‐TENG achieves an ultralow starting torque of 0.7 N·cm, enabling start‐up at 1.1 m s −1 and delivers a high average power density of 11.16 W m −3 . Remarkably, it maintains stable output across a range of temperature and humidity conditions and retains 95.1% of its initial performance after more than 50 000 cycles. Furthermore, develop an in situ self‐power hygrothermograph, anemometer and carbon monoxide environment monitoring system. This design offers a practical route to expand industrial exhaust energy harvesting and in situ self‐powered environment monitoring.
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