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首页> 外文期刊>Nano Energy >Galloping triboelectric nanogenerator for energy harvesting under low wind speed
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Galloping triboelectric nanogenerator for energy harvesting under low wind speed

机译:疾驰的摩擦纳米料,用于低风速下的能量收获

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摘要

Energy harvesting technology of converting wind energy into available electricity is of great significance. Yet efficiently extracting wind energy at low wind speed still needs to be improved. A gaslloping triboelectric nanogenerator (GTENG) based on contact electrification between two flexible beams is proposed, resulting in a significant advancement of the TENG's performance under low wind speeds. The impact behavior occurs between a main beam attached with a bluff body subjected to cross flows and an auxiliary beam in the case of beyond critical wind speed. The coupled interaction between the two beams is investigated, and different contact modes have been observed. A theoretical model is constructed to further understand the working mechanism and oscillating behaviors of the GTENG. The GTENG with a 3 cm. 3 cm TENG cell achieves an output voltage of over 200V at a low wind speed of 1.4 m/s. In addition, it is meaningful that the average output power at 1.4 m/s reaches 60% of that at a relatively high wind speed of 6 m/s, which demonstrates the high output efficiency of GTENG under low wind speed. The nanogenerator's environmental adaptability is unveiled at an air-conditioner vent, indicating that the GTENG is promising to drive electric devices in outdoor environments.
机译:将风能转化为可用电力的能量采伐技术具有重要意义。然而,需要改善在低风速下有效地提取风能。提出了一种基于两个柔性梁之间的接触电流的摩擦摩擦纳米液(GTUNG),导致腾腾在低风速下的性能显着推进。在附接的主梁之间发生冲击行为,其中凹槽体在超出临界风速的情况下经受交叉流动和辅助梁。研究了两个光束之间的耦合相互作用,并且已经观察到不同的接触模式。构建理论模型以进一步了解GTeng的工作机制和振荡行为。 GTUNG 3厘米。 3厘米滕电池以1.4米/秒的低风速实现200V的输出电压。此外,它有意义的是,1.4米/秒的平均输出功率达到60%,其中6米/秒的风速相对高,这表明了低风速下GTUNG的高输出效率。纳米汞仪的环境适应性在空调通风口揭开,表明GTUNG在户外环境中有望驱动电气设备。

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