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Low frequency acoustic energy harvesting using PZT piezoelectric plates in a straight tube resonator

机译:在直管谐振器中使用PZT压电板采集低频声能

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摘要

A novel and practical acoustic energy harvesting mechanism to harvest traveling sound at low audible frequency is introduced and studied both experimentally and numerically. The acoustic energy harvester in this study contains a quarter-wavelength straight tube resonator with lead zirconate titanate (PZT) piezoelectric cantilever plates placed inside the tube. When the tube resonator is excited by an incident sound at its acoustic resonance frequency, the amplified acoustic pressure inside the tube drives the vibration motions of piezoelectric plates, resulting in the generation of electricity. To increase the total voltage and power, multiple PZT plates were placed inside the tube. The number of PZT plates to maximize the voltage and power is limited due to the interruption of air particle motion by the plates. It has been found to be more beneficial to place the piezoelectric plates in the first half of the tube rather than along the entire tube. With an incident sound pressure level of 100 dB, an output voltage of 5.089 V was measured. The output voltage increases linearly with the incident sound pressure. With an incident sound pressure of 110 dB, an output voltage of 15.689 V and a power of 12.697 mW were obtained. The corresponding areal and volume power densities are 0.635 mW cm-2 and 15.115 μW cm-3, respectively.
机译:介绍了一种新颖实用的声能采集机制,以低频率采集行进声,并进行了实验和数值研究。本研究中的声能采集器包含一个四分之一波长直管谐振器,并在管内放置了锆钛酸铅(PZT)压电悬臂板。当管谐振器被其声谐振频率的入射声激发时,管内部放大的声压驱动压电板的振动运动,从而产生电能。为了增加总电压和功率,在管内放置了多个PZT板。由于空气微粒运动会干扰PZT板的数量,从而最大程度地提高电压和功率,因此受到限制。已经发现将压电板放置在管的前半部而不是沿着整个管更有利。在100 dB的入射声压水平下,测得的输出电压为5.089V。输出电压随入射声压线性增加。入射声压为110 dB时,输出电压为15.689 V,功率为12.697 mW。相应的面积和体积功率密度分别为0.635 mW cm-2和15.115μWcm-3。

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