Hydraulic pressure energy harvester enhanced by Helmholtz resonator

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
E. Skow, Zachary Koontz, K. Cunefare, A. Erturk
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引用次数: 6

Abstract

Hydraulic pressure energy harvesters (HPEH) are devices that convert the dynamic pressure within hydraulic systems into usable electrical power through axially loaded piezoelectric stacks excited off-resonance by the fluid. Within hydraulic systems, the dominant frequency is typically a harmonic of the pump operating frequency. The pressure fluctuations coupled with the piezoelectric stack can be amplified by creating a housing design that includes a Helmholtz resonator tuned to the dominant frequency of the fluid excitation. A Helmholtz resonator is an acoustic device that consists of a cavity coupled to a fluid medium via a neck, or in this case a port connection to the fluid flow, that acts as an amplifier when within the bandwidth of its resonance. The implementation of a piezoelectric stack within the HPEH allows for a Helmholtz resonator to be included within the fluidic environment despite the significantly higher than air static pressures typical of fluid hydraulic systems (on the order of one to tens of MPa). The resistive losses within the system, such as from energy harvesting and viscous losses, can also be used to increase the bandwidth of the resonance; thus increasing the utility of the device. This paper investigates the design, modeling, and performance of hydraulic pressure energy harvesters utilizing a Helmholtz resonator design.
亥姆霍兹谐振器增强的液压能量采集器
液压能量收集器(HPEH)是一种将液压系统内的动压力转化为可用电力的装置,它通过轴向加载的压电堆被流体激发出非共振。在液压系统中,主导频率通常是泵工作频率的谐波。通过创建一个包含可调谐到流体激励主频率的亥姆霍兹谐振器的外壳设计,可以放大与压电堆栈耦合的压力波动。亥姆霍兹谐振器是一种声学装置,它由一个腔通过颈部耦合到流体介质,或者在这种情况下是一个连接到流体流动的端口,在其谐振带宽内充当放大器。在HPEH内实现压电堆栈允许亥姆霍兹谐振器包含在流体环境中,尽管流体液压系统的典型空气静压明显高于空气静压(约为1至数十MPa)。系统内的电阻损失,如能量收集和粘性损失,也可以用来增加共振的带宽;从而增加了设备的效用。本文研究了利用亥姆霍兹谐振腔设计的液压能量采集器的设计、建模和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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