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Experimental parametric analysis of an energy harvester based on highly nonlinear solitary waves

机译:基于高度非线性孤立波的能量采集器的实验参数分析

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We investigate experimentally five different designs of an energy harvester based on mechanical vibration and highly nonlinear solitary waves. The harvester consists of a metamaterial formed by granular chains, an oscillator that taps the metamaterial, a solid in contact with the metamaterial, and a piezoelectric element glued to the solid. The overall principle is that the oscillator taps the metamaterial and creates a train of solitary waves along each chain. At the interface between the chains and the solid, part of the acoustic energy refracts into the solid where it coalesces at a point and triggers the vibration of the solid. Here, a transducer converts the focalized stress wave and the waves generated by the reverberation with the edges into electric potential. In the study presented in this article, we evaluate the effect of certain harvester parameters on the amount of energy that can be extracted. We considered five different designs by changing the oscillator, the dimension of the array, the solid material, and the transducer boundary condition. For each design we computed the power density, and we found that the density obtained with the best design is four orders of magnitude higher than the worst design.
机译:我们基于机械振动和高度非线性的孤立波,对五种不同设计的能量收集器进行了实验研究。收割机包括由颗粒链形成的超材料,敲击超材料的振荡器,与超材料接触的固体以及胶合到该固体的压电元件。总体原理是,振荡器会敲击超材料,并沿每条链产生一列孤波。在链和固体之间的界面处,一部分声能折射到固体中,在该点处聚结并触发固体的振动。在此,换能器将聚焦应力波和由带有边缘的混响产生的波转换为电位。在本文提出的研究中,我们评估某些收割机参数对可提取能量的影响。通过改变振荡器,阵列的尺寸,固体材料和换能器边界条件,我们考虑了五种不同的设计。对于每种设计,我们都计算了功率密度,我们发现,最佳设计所获得的密度比最差设计高出四个数量级。

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