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Measurement of Circumferential Liquid Film Thickness in Horizontal Gas-Liquid Annular Flow Using Ultrasound

机译:用超声测量水平气液环形流动下的周向液膜厚度

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Circumferential liquid film thickness (CLFT) is an important characteristic parameter of gas-liquid two-phase annular flow, and its measurement technology and method has always been a research focus of two-phase flow. In this paper, a set of circumferential liquid film thickness sensor measurement system is designed based on ultrasonic technology, and the non-contact measurement of circumferential liquid film thickness of horizontal pipe is realized by using ultrasonic echo reference signal elimination (UERE) method. The experimental pipe diameter is 50 mm, the ranges of gas and liquid superficial velocity are 15–30 m/s and 0.015-0.1 m/s, respectively. The working condition is ambient temperature, and the pressure $P$ is 0.1-0.7 MPa. Besides, the liquid film thickness at different circumferential positions is obtained and analyzed quantitatively under 53 working conditions. The experimental results are compared with the existing correlation, and considering the influence of system pressure, a new prediction correlation for CLFT is established. The relative error between the experimental results and the new correlation is within ±25%, which verifies the applicability of the new correlation.
机译:圆周液体膜厚度(CLFT)是气液两相环形流量的重要特征参数,其测量技术和方法始终是两相流的研究焦点。本文基于超声技术设计了一组周向液体膜厚度传感器测量系统,通过使用超声波回波参考信号消除(UERE)方法来实现水平管周向液膜厚度的非接触测量。实验管道直径为50毫米,气体和液体浅刻速度的范围分别为15-30 m / s和0.015-0.1 m / s。工作条件是环境温度,压力 $ p $ 是0.1-0.7 MPa。此外,在53个工作条件下定量地获得不同圆周位置处的液体膜厚度并分析。将实验结果与现有的相关性进行比较,并考虑系统压力的影响,建立了CLFT的新预测相关性。实验结果与新相关之间的相对误差在±25内,验证新相关的适用性。

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