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基于石英厚度剪切模式谐振器的声波流量传感器。

Acoustic wave flow sensor using quartz thickness shear mode resonator.

机构信息

Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Sep;56(9):1945-54. doi: 10.1109/TUFFC.2009.1270.

Abstract

A quartz thickness shear mode (TSM) bulk acoustic wave resonator was used for in situ and real-time detection of liquid flow rate in this study. A special flow chamber made of 2 parallel acrylic plates was designed for flow measurement. The flow chamber has a rectangular flow channel, 2 flow reservoirs for stabilizing the fluid flow, a sensor mounting port for resonator holding, one inlet port, and one outlet port for pipe connection. A 5-MHz TSM quartz resonator was edge-bonded to the sensor mounting port with one side exposed to the flowing liquid and other side exposed to air. The electrical impedance spectra of the quartz resonator at different volumetric flow rate conditions were measured by an impedance analyzer for the extraction of the resonant frequency through a data-fitting method. The fundamental, 3rd, 5th, 7th, and 9th resonant frequency shifts were found to be around 920, 3572, 5947, 8228, and 10,300 Hz for flow rate variation from 0 to 3000 mL/min, which had a corresponding Reynolds number change from 0 to 822. The resonant frequency shifts of different modes are found to be quadratic with flow rate, which is attributed to the nonlinear effect of quartz resonator due to the effective normal pressure imposing on the resonator sensor by the flowing fluid. The results indicate that quartz TSM resonators can be used for flow sensors with characteristics of simplicity, fast response, and good repeatability.

摘要

本研究采用石英厚度剪切模式(TSM)体声波谐振器对液体流速进行原位实时检测。设计了一个特殊的由 2 块平行亚克力板组成的流动腔用于流量测量。该流动腔具有一个矩形流动通道、2 个用于稳定流体流动的储液器、一个用于安装谐振器的传感器端口、一个进口和一个出口用于管道连接。一个 5MHz 的 TSM 石英谐振器通过一侧暴露于流动液体另一侧暴露于空气的方式与传感器安装端口进行边缘键合。通过数据拟合方法从阻抗分析仪测量的石英谐振器在不同体积流速条件下的阻抗谱中提取出谐振频率,以获得基本、第 3、第 5、第 7 和第 9 个谐振频率的变化。在流速从 0 到 3000mL/min 的变化范围内,其相应的雷诺数从 0 变化到 822,这些频率的变化约为 920、3572、5947、8228 和 10300Hz。不同模式的谐振频率变化与流速呈二次关系,这归因于流动流体对谐振器传感器施加的有效正压力对石英谐振器的非线性影响。结果表明,石英 TSM 谐振器可用作流量传感器,具有简单、快速响应和良好重复性的特点。

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