摩擦电效应
无线
无线传感器网络
全向天线
电气工程
计算机科学
体积流量
固定无线
实时计算
天线(收音机)
无线网络
无线传感器网络中的密钥分配
材料科学
工程类
电信
物理
计算机网络
量子力学
复合材料
作者
Dong Wan,Xin Xia,Haoyu Wang,Shaoshuai He,Jiadan Dong,Jinhong Dai,Dong Guan,Junyu Zheng,Xiya Yang,Yunlong Zi
标识
DOI:10.1002/smtd.202301670
摘要
Flow sensing exhibits significant potential for monitoring, controlling, and optimizing processes in industries, resource management, and environmental protection. However, achieving wireless real-time and omnidirectional sensing of gas/liquid flow on a simple, self-contained device without external power support has remained a formidable challenge. In this study, a compact-sized, fully self-powered wireless sensing flowmeter (CSWF) is introduced with a small size diameter of down to less than 50 mm, which can transmit real-time and omnidirectional wireless signals, as driven by a rotating triboelectric nanogenerator (R-TENG). The R-TENG triggers the breakdown discharge of a gas discharge tube (GDT), which enables flow rate wireless sensing through emitted electromagnetic waves. Importantly, the performance of the CSWF is not affected by the R-TENG's varied output, while the transmission distance is greater than 10 m. Real-time wireless remote monitoring of wind speed and water flow rate is successfully demonstrated. This research introduces an approach to achieve a wireless, self-powered environmental monitoring system with a diverse range of potential applications, including prolonged meteorological observations, marine environment monitoring, early warning systems for natural disasters, and remote ecosystem monitoring.
科研通智能强力驱动
Strongly Powered by AbleSci AI