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Studies on the transducers of clamp-on transit-time ultrasonic flow meter

机译:夹持式超声流量计的传感器研究

摘要

The clamp-on transit-time ultrasonic flow meters are widely applied for the advantage of noninvasive measurement and convenient deployment. Its key point lies on measuring of the time difference between the upstream and downstream. While high quality of the transducer transmitting/receiving ultrasonic signals is the premise of measuring time difference accurately. This paper studies on the main factors contributing to the uncertainty of the transducer’s output signal and focuses on the transducer’s frequency, incident angle and the separate distance. The selection principle of transducer’s frequency is presented by the analysis of the ultrasonic attention characteristics in the liquid. The incident angle range and precise installation distance of the transducers are calculated and analyzed by Snell’s law. Experiments are also carried out with the 1MHz transducers clamped on the aluminium pipe of 20mm outer diameter. The results show that the accurate calculation separate distance 18.16mm is effective to guarantee the output of high quality ultrasonic wave. If the axial installation error reaches more than 3mm, the one beam of ultrasonic signal cannot be guaranteed.
机译:钳式渡越时间超声流量计由于无创测量和易于部署的优点而被广泛应用。其重点在于测量上游和下游之间的时间差。高质量的换能器发送/接收超声波信号是精确测量时间差的前提。本文研究了导致传感器输出信号不确定性的主要因素,并着重研究了传感器的频率,入射角和分开的距离。通过对液体中超声波注意特性的分析,提出了换能器频率的选择原理。传感器的入射角范围和精确的安装距离是根据斯涅尔定律计算和分析的。还用1MHz换能器夹在外径20mm的铝管上进行了实验。结果表明,精确的计算间隔距离18.16mm有效地保证了高质量超声波的输出。如果轴向安装误差超过3mm,则不能保证一束超声波信号。

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