首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Mass flow rate measurements in gas-liquid flows by means of a venturi or orifice plate coupled to a void fraction sensor
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Mass flow rate measurements in gas-liquid flows by means of a venturi or orifice plate coupled to a void fraction sensor

机译:通过与空隙率传感器相连的文丘里管或孔板测量气液流量中的质量流量

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Two-phase flow measurements were carried out using a resistive void fraction meter coupled to a venturi or orifice plate. The measurement system used to estimate the liquid and gas mass flow rates was evaluated using an air-water experimental facility. Experiments included upward vertical and horizontal flow, annular, bubbly, churn and slug patterns, void fraction ranging from 2% to 85%, water flow rate up to 4000 kg/h, air flow rate up to 50 kg/h, and quality up to almost 10%. The fractional root mean square (RMS) deviation of the two-phase mass flow rate in upward vertical flow through a Venturi plate is 6.8% using the correlation of Chisholm (D. Chisholm, Pressure gradients during the flow of incompressible two-phase mixtures through pipes, venturis and orifice plates, British Chemical Engineering 12 (9) ( 1967) 454-457). For the orifice plate, the RMS deviation of the vertical flow is 5.5% using the correlation of Zhang et al. (H.J. Zhang, W.T. Yue, Z.Y. Huang, Investigation of oil-air two-phase mass flow rate measurement using venturi and void fraction sensor, journal of Zhejiang University Science 6A (6) (2005) 601-606). The results show that the flow direction has no significant influence on the meters in relation to the pressure drop in the experimental operation range. Quality and slip ratio analyses were also performed. The results show a mean slip ratio lower than 1.1, when bubbly and slug flow patterns are encountered for mean void fractions lower than 70%. (C) 2008 Elsevier Inc. All rights reserved.
机译:使用连接到文丘里管或孔板的电阻式空隙率计进行两相流量测量。使用空气-水实验设备评估了用于估算液体和气体质量流量的测量系统。实验包括垂直和水平向上流动,环形,气泡,搅动和团状模式,空隙率从2%到85%,水流量高达4000 kg / h,空气流量高达50 kg / h和质量提高几乎达到10%。使用Chisholm的相关性(D. Chisholm,不可压缩的两相混合物流过时的压力梯度),通过文丘里板向上垂直流动时,两相质量流量的分数均方根(RMS)偏差为6.8%管道,文丘里管和孔板,英国化学工程12(9)(1967)454-457)。对于孔板,使用Zhang等人的相关性,垂直流的RMS偏差为5.5%。 (张宏杰,岳文涛,黄之Y,使用文丘里管和空隙率传感器测量油气两相质量流量的研究,浙江大学学报6A(6)(2005)601-606)。结果表明,在实验操作范围内,流向对仪表的压力下降无明显影响。还进行了质量和滑移率分析。结果表明,当平均气泡率低于70%时遇到气泡和团状流型时,平均滑移率低于1.1。 (C)2008 Elsevier Inc.保留所有权利。

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