2020
DOI: 10.1063/5.0014484
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A synergetic hybrid mechanism of piezoelectric and triboelectric for galloping wind energy harvesting

Abstract: Small-scale wind energy harvesting, which can replace batteries to power small electronic devices and realize self-powered systems, has been extensively studied. To improve the working wind-speed range and output power of small-scale wind energy generation systems, we propose a synergetic hybrid piezoelectric and triboelectric mechanism for galloping wind energy harvesting. In this mechanism, a piezoelectric energy harvester (PEH) works in the vibration area and starts working at low wind speeds, while triboel… Show more

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Cited by 51 publications
(29 citation statements)
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“…Hybridizing a TENG with other energy-harvesting technologies, such as piezoelectric nanogenerators (PENGs), solar cells, and electromagnetic generators (EMGs), is a better strategy to alleviate this troublesome issue in the short term. Among them, the combination of EMGs and TENGs can provide preferable energy conversion efficiency and complement their respective advantages. A theoretical comparison between TENGs and EMGs was reported by Zhang et al, which indicated a comparative and symmetric relationship between EMG and TENG .…”
Section: Structural Diagram Of the Ftehgmentioning
confidence: 99%
“…Hybridizing a TENG with other energy-harvesting technologies, such as piezoelectric nanogenerators (PENGs), solar cells, and electromagnetic generators (EMGs), is a better strategy to alleviate this troublesome issue in the short term. Among them, the combination of EMGs and TENGs can provide preferable energy conversion efficiency and complement their respective advantages. A theoretical comparison between TENGs and EMGs was reported by Zhang et al, which indicated a comparative and symmetric relationship between EMG and TENG .…”
Section: Structural Diagram Of the Ftehgmentioning
confidence: 99%
“…Wind as a kind of widely distributed and renewable energy has played a significant role in electric supply and contributed to alleviate the energy crisis. According to statistics, the exploitable part of global wind energy is up to 5.3 × 10 13 kWh per year. On the other hand, the anemometer is a powerful device for wind monitoring and weather forecasting that usually works in unattended environment and needs a long service life. Up to now, the anemometer is mainly supplied by short-term battery, which greatly increases the maintenance cost and environmental pollution. Therefore, harvesting wind energy from the ambient environment to power the anemometer is an optimal method to realize sustainable operation.…”
mentioning
confidence: 99%
“…Integrating different nanogenerators into one hybrid device is another way to harvest different forms of environmental energy (Chen et al, 2017a;Jurado et al, 2020;Wang et al, 2020aWang et al, , 2020b. Among them, hybrid triboelectric-piezoelectric hybrid nanogenerators have been successfully prepared and widely applied in various fields.…”
Section: Other Nanogeneratorsmentioning
confidence: 99%