用于声波能量收集装置的亥姆霍兹谐振器的改进设计

Izhar, F. Khan
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引用次数: 8

摘要

亥姆霍兹谐振器是声波能量收集装置的关键元件。它用来增强或减弱传入的声波。在声波能量采集器中,超声的目的是增强入射声波。本文提出了一种改进的声能量收集装置的HR结构。报道了HR的建模与仿真。将人力资源系统建模为单自由度系统。与先前开发的声能收集装置中使用的HR相比,所提出的HR具有较高的压力增益。所提出的HR设计使困在亥姆霍兹腔内的空气具有较高的声学刚度,从而最终提高了HR的压力增益。此外,对于相似的尺寸,提出的HR的谐振频率为1693 Hz,而报道的HR的谐振频率为1119.7 Hz。此外,谐振时的压力增益为56.5 dB,比已有的圆柱形腔的压力增益52.7 dB要高得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved design of Helmholtz resonator for acoustic energy harvesting devices
Helmholtz resonator (HR) is the key element of acoustic energy harvesting devices. It is used to augment or attenuate the incoming acoustic wave. In acoustic energy harvesters the objective of HR is to augment the incoming acoustic wave. In this work an improved architecture of HR is proposed for acoustic energy harvesting devices. Modeling and simulation of the HR is reported. The HR is modeled as one degree of freedom system. The proposed HR has a high pressure gain as compared to the HR used in previously developed acoustic energy harvesting devices. The proposed design for HR results in high acoustic stiffness of the air entrapped inside the Helmholtz cavity that ultimately improves the pressure gain of the HR. Moreover, for similar dimensions the resonant frequency of the proposed HR is 1693 Hz, while resonant frequency of the reported HRs is 1119.7 Hz. Furthermore, at resonance the pressure gain of the proposed HR is 56.5 dB which is quite high than the pressure gain of the reported HRs with cylindrical shape cavities that is 52.7 dB.
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