载液APM的能量泄漏及衰减分析

Zhi-jun Chen, Peng Ruan, Xin Huang, Dafeng Fu, Mengyang Wang
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引用次数: 0

摘要

声板模波(APM)装置适用于液相测量。液体负荷的出现会导致APM的能量泄漏,其原因是多方面的。根据声波在层状介质中的传播理论,建立了考虑液体载荷的APM分析模型。以无粘性液体、导电液体和粘性液体为例,通过对普通APM、矢状APM和剪切-水平APM的数值模拟,研究了液体加载下APM的能量泄漏,并得出原因。在声场分量表达式中加入衰减因子,建立了泄漏APM的二维分析模型。采用“表面有效介电常数粗搜索”加“边界条件系数行列式精搜索”的方法,得到了泄漏APM的传播速度和衰减系数。对APM设备进行了设计和测试。实验结果与数值模拟结果基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy leakage and attenuation analysis of APM with liquid loading
Acoustic Plate Mode Wave (APM) device is suitable for liquid-phase measurement. The appearance of liquid loading would lead to the energy leakage of APM and the reasons are various. According to acoustic wave propagation theory in the layered medium, this paper establishes the APM analysis model with liquid loading. Using non-viscous liquid, conductive liquid and viscous liquid as examples, by numerical simulations of general APM, sagittal APM and shear-horizontal APM, the APM energy leakage with liquid loading is researched, and the reasons are concluded. Furthermore, the two-dimensional analysis model of leaky APM is established by adding attenuation factor in the expressions of acoustic field components. The leaky APM propagation velocity and attenuation factor are obtained by the method of “surface effective permittivity rough-searching” added by “boundary conditions coefficient determinant refined-searching. The APM devices are designed and tested. The experimental results are in agreement with the numerical simulations.
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