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A combination method for metering gas-liquid two-phase flows of low liquid loading applying ultrasonic and Coriolis flowmeters

机译:超声波流量计和科里奥利流量计计量低液体负荷气液两相流的组合方法

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摘要

A new method for measuring the individual mass flowrate of gas-liquid two-phase flow of low liquid loading was proposed based on the combination of ultrasonic and Coriolis flowmeters. The ultrasonic flowmeter and Coriolis flowmeter were allocated in series along a horizontal flowline under stratified and annular flow regimes. A coupling model was obtained by combining two sub-models developed based on the two measurement principles respectively. The combination model was verified through experimental data and it has been demonstrated that (1) with the coupling model taking the apparent gas volumetric flowrate from the ultrasonic flowmeter and mass flowrate from the Coriolis flowmeter as inputs employed, the root-mean-square errors of the calculated gas and liquid mass flowrates are 3.09% and 12.78%, respectively, within the range of 0.15 ≤ χ ≤ 0.65, 0.03 ≤ Χ ≤ 0.45 and 0.2 MPa ≤ P ≤ 0.5 MPa; (2) it is a possible way to develop a coupling model by employing the apparent density from the Coriolis flowmeter instead of the mass flowrate to extend the application range of the combination measurement method and the root-mean-square errors of the calculated gas and liquid mass flowrate are 2.59% and 4.38%, respectively, within the range of 0.04 ≤ χ ≤ 0.15 at P=0.2 MPa.
机译:结合超声流量计和科里奥利流量计,提出了一种测量低液体负荷气液两相流单质流量的新方法。超声流量计和科里奥利流量计在分层和环形流态下沿水平流线串联分配。通过组合分别基于两种测量原理开发的两个子模型来获得耦合模型。通过实验数据对组合模型进行了验证,结果表明:(1)耦合模型以超声流量计的表观气体体积流量和科里奥利流量计的质量流量为输入,均方根误差为计算的气体和液体质量流量分别为0.15≤χ≤0.65、0.03≤Χ≤0.45和0.2 MPa≤P≤0.5 MPa的范围内的3.09%和12.78%; (2)通过使用科里奥利流量计的表观密度代替质量流量来扩展耦合测量方法的应用范围以及计算出的气体和气体的均方根误差,可以建立耦合模型。在P = 0.2 MPa时,液体质量流量分别为2.59%和4.38%,在0.04≤χ≤0.15的范围内。

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