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Grid of hybrid nanogenerators for improving ocean wave impact energy harvesting self-powered applications

机译:杂交纳米电网改善海浪冲击能量收集自供电应用

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This paper describes an alternative approach for improving the output power performance for coastal wave impact energy harvesting systems, located at water-structure interfaces. This is achieved by simultaneously coupling the triboelectric and piezoelectric effects, exhibited in some materials. The use of finite element modelling, and experimental electrical characterization, enables the integration of hybrid devices into a breaking water wave generator tank. This provides a mechanism for simulating actual ocean wave conditions at low frequencies (0.7 Hz-3 Hz). Enhancements in the output performance by a factor of 2.24 and 3.21, relative to those obtained from using single triboelectric and piezoelectric nanogenerators, were achieved. This is demonstrated by evaluating the output current, voltage, transferred charge, and charging performance from a grid of up to four hybrid devices connected to capacitors of different capacitance values. Such hybrid devices were capable of powering a one-way wireless transmitter with a generated output power between 340.85 mu W and 2.57 mW and sent a signal to a receiver at different distances from 2 m to 8 m. The research shows that such an integrated device can provide a promising mechanism for developing high-performance energy harvesting mechanisms for ocean wave impact to drive self-powered systems having an average power consumption of 1-100 mW. Further, it is estimated that through the construction of large water-hybrid nanogenerator-structure interfaces, output powers of approximately 21.61 W can be generated for powering networks of self-powered sensing systems in smart large-scale applications.
机译:本文介绍了一种替代方法,用于提高位于水结构界面的沿海波冲击能量收集系统的输出功率性能。这是通过同时耦合摩擦和压电效应来实现的,在一些材料中展出。使用有限元建模和实验电学表征,使混合装置集成到破坏水波发生器罐中。这提供了用于在低频下模拟实际海浪条件(0.7Hz-3 Hz)的机制。达到了相对于使用单一摩擦和压电纳米能器获得的等因素的输出性能增强。这通过评估从连接到不同电容值的电容器的高达四个混合装置的电网的输出电流,电压,转移电荷和充电性能来证明。这种混合装置能够以340.85μmw和2.57mw的产生输出功率为单向无线发射器供电,并将信号发送到从2 m到8 m的不同距离处的接收器。该研究表明,这种集成装置可以提供用于开发用于海波冲击的高性能能量收集机制的有希望的机制,以驱动具有1-100 MW的平均功耗的自动系统。此外,据估计,通过构造大型水 - 混合纳米电磁体 - 结构界面,可以为智能大规模应用中的自动传感系统的网络供电,可以产生约21.61W的输出功率。

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