Resonant frequency of the silicon micro-structure of MEMS vector hydrophone in fluid-structure interaction

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Abstract

The MEMS vector hydrophone developed by the North University of China has advantages of high Signal to Noise Ratio, ease of array integration, etc. However, the resonance frequency of the MEMS device in the liquid is different from that in the air due to the fluid-structure interaction (FSI). Based on the theory of Fluid-Solid Coupling, a generalized distributed mass attached on the micro-structure has been found, which results in the resonance frequency of the microstructure in the liquid being lower than that in the air. Then, an FSI simulation was conducted by ANSYS software. Finally, the hydrophone was measured by using a shaking table and a vector hydrophone calibration system respectively. Results show that, due to the FSI, the resonance frequency of the MEMS devices of the bionic vector hydrophone in the liquid declines approximately 30% compared to the case in the air.

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Zhang, G., Zhao, P., & Zhang, W. (2015). Resonant frequency of the silicon micro-structure of MEMS vector hydrophone in fluid-structure interaction. AIP Advances, 5(4). https://doi.org/10.1063/1.4905885

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