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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Time domain evaluation of resonance antireflection (RAR) signals for ultrasonic density measurement
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Time domain evaluation of resonance antireflection (RAR) signals for ultrasonic density measurement

机译:用于超声密度测量的共振抗反射(RAR)信号的时域评估

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摘要

This paper presents an ultrasonic method for measuring the mass density of liquids with a solid layer separating a reference fluid and a test fluid. By adjusting the frequency of the exciting signal according to the thickness of the layer, it is possible to generate destructive interference of the waves reflected at the first and second boundary of the layer. Thus, the layer appears to vanish for the incident waves. In the steady state the resulting echo signal depends only on the acoustic impedances of the reference fluid and the test fluid and the density of interest can be extracted. Short- and long-term drifts of the electronics and the ultrasonic transducer (implied) are eliminated by using the well-known pulse-echo technique, with additional frontwave detection. The method presented here is a first step in developing an ultrasonic mass flow meter.
机译:本文提出了一种超声方法,该方法通过将参考流体和测试流体分开的固体层来测量液体的质量密度。通过根据层的厚度调节激励信号的频率,可以对在层的第一和第二边界处反射的波产生相消干涉。因此,该层对于入射波似乎消失了。在稳态下,产生的回波信号仅取决于参考流体和测试流体的声阻抗,并且可以提取感兴趣的密度。通过使用众所周知的脉冲回波技术以及额外的前波检测,可以消除电子设备和超声换能器(暗示)的短期和长期漂移。这里介绍的方法是开发超声波质量流量计的第一步。

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