4.8 Article

Double-blade structured triboelectric-electromagnetic hybrid generator with aerodynamic enhancement for breeze energy harvesting

期刊

APPLIED ENERGY
卷 326, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.apenergy.2022.119970

关键词

Triboelectric nanogenerator; Triboelectric -electromagnetic hybrid generator; Breeze energy harvesting; Computational fluid dynamics simulation

资金

  1. National Natural Science Foundation of China
  2. Natural Science Foundation of Beijing Municipality
  3. [51975429]
  4. [3222023]

向作者/读者索取更多资源

This paper presents the design of a double-blade structured triboelectric-electromagnetic hybrid generator (DB-TEHG) for efficient harvesting of low-speed wind energy. The blade parameters are optimized using computational fluid dynamics, and the device is able to start generating electricity at a wind speed as low as 2 m/s. The demonstration results show that the DB-TEHG can convert wind energy into electricity with an efficiency of 20.88%.
Wind energy is a form of renewable energy with excellent development prospects. However, low-speed wind energy has not been effectively explored and utilized. To this end, a double-blade structured triboelectric-electromagnetic hybrid generator (DB-TEHG) is designed in this paper, which can efficiently harvest breeze energy by using double-blade structured design to improve the aerodynamic performance of the device. The improved blade structures directly drive the triboelectric nanogenerator (TENG) and electromagnetic generator (EMG) without requiring additional transmission systems. The blade parameters are simulated and optimized using computational fluid dynamics to enhance the wind energy harvesting capability of the device. The minimum starting wind speed of DB-TEHG is found to be 2 m/s. The output performance of a single TENG unit is 910 V, 45 mu A, 280 nC, and the peak power is 4 mW, and that of the EMG is 236 V, 24.2 mA, and a peak power of 0.5 W, when the wind speed is 5 m/s. It is also found that at this wind speed the DB-TEHG can convert wind energy into electricity output with an efficiency of 20.88%. The demonstration results prove that the proposed DB-TEHG can power a wireless thermometer by harvesting outdoor natural wind energy. This paper

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