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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Transient surface velocity measurements in a liquid by an active ultrasonic probe
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Transient surface velocity measurements in a liquid by an active ultrasonic probe

机译:有源超声探头在液体中进行瞬时表面速度测量

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摘要

A high sensitive ultrasonic method for measuring the surface velocity in a liquid is described. This method is based on the detection of the phase of a high frequency continuous ultrasonic wave (probe beam) reflected from the moving surface. The analysis shows that the main phenomenon is the interaction, through the acoustic nonlinearity parameter B/A of the fluid, between the reflected carrier wave and the low frequency pressure wave transmitted by the moving surface in the liquid. This interaction produces a phase-shift of the carrier proportional to the surface velocity and to the time delay undergone by the probe beam. Results of experiments carried out in water with a 30-MHz focused transducer probe are in good agreement with the analysis. Surface velocity smaller than 0.04 mm/s (i.e., mechanical displacements down to 3 pin) can be detected in a 5 MHz bandwidth. Lateral resolution of 0.5 mm has been achieved. Compared to optical techniques, this method has the advantages of compactness and of a low sensitivity to surface roughness.
机译:描述了用于测量液体中的表面速度的高灵敏度超声方法。该方法基于从移动表面反射的高频连续超声波(探针束)的相位检测。分析表明,主要现象是通过流体的声学非线性参数B / A,反射的载波与液体中运动表面传输的低频压力波之间的相互作用。这种相互作用产生了与表面速度和探测束所经历的时间延迟成比例的载体相移。使用30 MHz聚焦换能器探头在水中进行的实验结果与分析结果非常吻合。在5 MHz的带宽内可以检测到小于0.04 mm / s的表面速度(即低至3针的机械位移)。横向分辨率为0.5毫米。与光学技术相比,该方法具有紧凑性和对表面粗糙度的敏感性低的优点。

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