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Enhancement of elastic wave energy harvesting using adaptive piezo-lens

机译:使用自适应压电透镜增强弹性波能量收集

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This paper exploits an adaptive piezo-lens to improve the harvested power (energy) from traveling waves. The piezo-lens comprises a host plate and piezoelectric patches bonded on the plate surfaces. The piezoelectric patches are shunted with negative capacitance (NC) circuits. The spatial variation of the refractive index inside the piezo-lens domain is designed to fulfill a hyperbolic secant function by tuning the NC values. This design allows the piezo-lens to continuously bend the incident waves toward a designed focal point, resulting in an energy concentration zone with a high level of energy density. This energy concentration effect may be exploited to improve the harvested power from waves. In addition, the piezo-lens is tunable - the waves can be focused at different locations by designing the NC values. This tunability may make the harvesting systems incorporating a piezo-lens be adaptable to environment changes. The above expected practical interests of the piezo-lens for wave energy harvesting are discussed and verified in the paper. Fully coupled numerical models are developed to predict the dynamical responses of the piezoelectric systems.
机译:本文利用自适应压电透镜来提高行波的采集功率(能量)。压电透镜包括主体板和粘结在板表面上的压电片。压电贴片与负电容(NC)电路并联。压电透镜域内部的折射率的空间变化旨在通过调整NC值来实现双曲正割函数。这种设计可使压电透镜将入射波连续弯曲向设计的焦点,从而形成具有高能量密度水平的能量集中区。可以利用这种能量集中效应来改善从波浪中获取的功率。此外,压电透镜是可调的-通过设计NC值,可以将波聚焦在不同的位置。这种可调性可使结合了压电透镜的采集系统适应环境变化。本文讨论并验证了压电透镜在波浪能量收集方面的上述预期实际利益。开发了完全耦合的数值模型来预测压电系统的动力响应。

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