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A Capillary Structured Droplet-Based Triboelectric Nanogenerator for High-Accuracy Rainfall Monitoring
Qin, Jintao1,2; Huang, Taosheng1,2; Wang, Tengfei1; Li, Hengyu2; Yu, Yang2; Wang, Zhong Lin2,3; Shen, Ping4; Cheng, Tinghai2
2024-04-01
Source PublicationIEEE Sensors Journal
ISSN1530-437X
Volume24Issue:7Pages:11342-11353
Abstract

Accurate rainfall monitoring carries significant importance across meteorological and hydrological domains. However, the existing sensors face numerous challenges, including issues related to accuracy, stability, and limited measurement range, particularly during heavy rain events. Here, an innovative droplet-based triboelectric nanogenerator (D-TENG) rain gauge is proposed to overcome the above challenges. It incorporates a saddle-shaped rainfall bearing plate designed to channel rainwater for regular dripping onto the D-TENG, thereby generating electrical signals for droplet enumeration. The feasibility of the D-TENG rain gauge is substantiated through the analyses of the stability of the electrical signal (short-circuit current) and droplet weight. Experimental results illustrate the effective measurement range of the D-TENG rain gauge as 0-243.1 mm/h, with the relative error in calculated rainfall intensity within ±4%, satisfying the Chinese standard for precipitation observation instruments. Furthermore, the resolution of the D-TENG rain gauge is 3.96 × 10 mm, five orders of magnitude smaller than the resolution of widely-used tipping bucket rain gauge (TBR). Thus, our proposed D-TENG rain gauge provides a feasible solution for high-accuracy and high-resolution rainfall monitoring across a wide effective measurement range.

KeywordDroplet-based Triboelectric Nanogenerator (D-teng) High Accuracy High Resolution Rain Gauge Wide Effective Measurement Range
DOI10.1109/JSEN.2024.3360987
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaEngineering ; Instruments & Instrumentation ; Physics
WOS SubjectEngineering, Electrical & Electronic ; Instruments & Instrumentation ; Physics, Applied
WOS IDWOS:001245625800251
PublisherIEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC, 445 HOES LANE, PISCATAWAY, NJ 08855-4141
Scopus ID2-s2.0-85184798785
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Citation statistics
Document TypeJournal article
CollectionFaculty of Science and Technology
THE STATE KEY LABORATORY OF INTERNET OF THINGS FOR SMART CITY (UNIVERSITY OF MACAU)
DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING
DEPARTMENT OF OCEAN SCIENCE AND TECHNOLOGY
Corresponding AuthorWang, Zhong Lin; Shen, Ping; Cheng, Tinghai
Affiliation1.University of Macau, State Key Laboratory of Internet of Things for Smart City, The Department of Civil and Environmental Engineering, Macao
2.Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, China
3.Georgia Institute of Technology, School of Materials Science and Engineering, Atlanta, 30332, United States
4.University of Macau, State Key Laboratory of Internet of Things for Smart City, Department of Ocean Science and Technology, Macao
First Author AffilicationUniversity of Macau
Corresponding Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Qin, Jintao,Huang, Taosheng,Wang, Tengfei,et al. A Capillary Structured Droplet-Based Triboelectric Nanogenerator for High-Accuracy Rainfall Monitoring[J]. IEEE Sensors Journal, 2024, 24(7), 11342-11353.
APA Qin, Jintao., Huang, Taosheng., Wang, Tengfei., Li, Hengyu., Yu, Yang., Wang, Zhong Lin., Shen, Ping., & Cheng, Tinghai (2024). A Capillary Structured Droplet-Based Triboelectric Nanogenerator for High-Accuracy Rainfall Monitoring. IEEE Sensors Journal, 24(7), 11342-11353.
MLA Qin, Jintao,et al."A Capillary Structured Droplet-Based Triboelectric Nanogenerator for High-Accuracy Rainfall Monitoring".IEEE Sensors Journal 24.7(2024):11342-11353.
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