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A new method for liquid film thickness measurement based on ultrasonic echo resonance technique in gas-liquid flow

机译:一种基于超声回波共振技术在气液流动中的液膜厚度测量方法

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摘要

Liquid film thickness is an important parameter for gas-liquid two phase flow, and the measurement methods are significant for studying heat and mass transfer characteristics. Among many liquid film thickness measurement methods, the ultrasonic method is more suitable for actual working conditions and has a good application prospect. But the common ultrasonic pulse echo method can't measure thin thickness and thin film resonance method is affected by multiple echoes and noise. To overcome above defects, a new method called ultrasonic echo resonance main frequency (UERMF) method is proposed and a measuring system is designed to measure liquid film thickness. In static experiment, the relative error of particle image method and UERMF method is within +/- 2.7%. In flowing experiment, good agreement is found between conductance probe method and UERMF method, and the error is less than +/- 10%. The results show the UERMF method can accurately measure micrometer-size liquid film thickness. (C) 2019 Elsevier Ltd. All rights reserved.
机译:液体膜厚度是气液两相流动的重要参数,测量方法对于研究热和传质特性是显着的。在许多液体膜厚度测量方法中,超声波方法更适合实际工作条件,具有良好的应用前景。但是常见的超声波脉冲回波方法不能测量薄厚度,薄膜谐振方法受多个回波和噪声的影响。为了克服上述缺陷,提出了一种称为超声波回波共振主频率(UERMF)方法的新方法,并且设计测量系统以测量液体膜厚度。在静态实验中,粒子图像方法和UERMF方法的相对误差在+/- 2.7%之内。在流动的实验中,在电导探针方法和UERMF方法之间发现了良好的一致性,误差小于+/- 10%。结果表明,UERMF方法可以精确测量微米尺寸的液体膜厚度。 (c)2019年elestvier有限公司保留所有权利。

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