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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasonic measurement of density of liquids flowing in tubes
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Ultrasonic measurement of density of liquids flowing in tubes

机译:超声波测量管中流动液体的密度

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This paper presents the implementation of the relative reflection method for the ultrasonic measurement of the density of liquids, which may be flowing in pipelines, at different temperatures. This technique will be shown to be valid for large-diameter tubes containing flowing liquids. It employs a double-element transducer, consisting of a piezoelectric ceramic transmitter and a large aperture PVDF membrane receiver, separated by a polymethylmethacrylate buffer rod. Between the receiver and the liquid is a PMMA reference rod. The density is obtained from the reflection coefficient of the reference rod-liquid interface and the transit time between this interface and a reflector placed in the opposite wall of the tube. The DET is calibrated once to account for temperature effects. The calibration is incorporated during signal processing, so that the actual density measurement is temperature compensated. In testing this method, a system was implemented and measurements of several liquids, stationary and flowing in a pipeline, were conducted. The error of measurements obtained by this method for distilled water, tap water, castor oil, and ethanol, when compared to data in the literature or obtained by a pycnometer, is less than 1.5%.
机译:本文介绍了相对反射法在超声波测量液体在不同温度下可能在管道中流动的密度时的实现方法。该技术将显示对包含流动液体的大口径管是有效的。它采用了一个双元件换能器,该换能器由压电陶瓷发射器和大孔径PVDF膜接收器组成,由聚甲基丙烯酸甲酯缓冲棒隔开。在接收器和液体之间是一个PMMA参考棒。密度是从参考棒-液体界面的反射系数以及该界面与放置在管子相对壁中的反射器之间的过渡时间获得的。对DET进行一次校准以解决温度影响。校准是在信号处理过程中进行的,因此可以对实际的密度测量进行温度补偿。在测试此方法时,实施了一个系统,并对管道中固定和流动的几种液体进行了测量。与文献中的数据比较或通过比重瓶测得的比重,用这种方法获得的蒸馏水,自来水,蓖麻油和乙醇的测量误差小于1.5%。

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