材料科学
管道(软件)
清除
流量(数学)
发电机(电路理论)
摇摆
水流
能量(信号处理)
机械
机械工程
声学
功率(物理)
环境科学
热力学
物理
环境工程
工程类
量子力学
化学
生物化学
抗氧化剂
作者
Zhijie Huang,Tongtong Zhang,Yanan Bai,Shengjie Yin,Yuanhao Wang,Chris Bowen,Ya Yang
标识
DOI:10.1002/aenm.202502204
摘要
Abstract Pipeline hydroelectric generators are important in order to collect water‐flow‐related energy from pipelines. However, conventional pipeline hydroelectric generators significantly diminish the pressure and flow velocity of water within a pipeline, thereby limiting their widespread adoption. Here a flexible swing‐triggered generator (FSTG) is proposed to provide a new approach for generating electrical power within a pipeline. The fundamental principles of an FSTG based on vortex shedding effects and electromagnetic induction are examined in detail, in addition to assessing the interaction between the fluid, magnets embedded in flexible materials, and soft iron materials. The FSTG is able to convert water‐flow energy into electrical energy and drive electronic equipment, while the water pressure and flow velocity are only reduced by ≈5%. The FSTG can provide a peak power of 6.6 mW at a flow velocity of 1.31 m s −1 and maintain a stable output in 48 000 cycles. The FSTG is mounted on a household water pipe and collects sufficient energy to run an LED thermometer and a wireless Bluetooth thermometer. The new FSTG design widens the way for pipeline water energy harvesting and utilization.
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