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Time-resolved flowmetering of gas-liquid two-phase pipe flow by ultrasound pulse Doppler method

机译:超声脉冲多普勒法的气液两相管时间分辨流量计量

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Ultrasound pulse Doppler method is applied for componential volumetric flow rate measurement in multiphase pipe flow consisted of gas and liquid phases. The flowmetering is realized with integration of measured velocity profile over the cross section of the pipe within liquid phase. Spatio-temporal position of interface is detected also with the same ultrasound pulse, which further gives cross sectional void fraction. A series of experimental demonstration was shown by applying this principle of measurement to air-water two-phase flow in a horizontal tube of 40 mm in diameter, of which void fraction ranges from 0 to 90% at superficial velocity from 0 to 15 m/s. The measurement accuracy is verified with a volumetric type flowmeter. We also analyze the accuracy of area integration of liquid velocity distribution for many different patterns of ultrasound measurement lines assigned on the cross section of the tube. The present method is also identified to be pulsation sensor of flow rate that fluctuates with complex gas-liquid interface behavior.
机译:在由气相和液相组成的多相管道流中,超声脉冲多普勒方法用于分量体积流量测量。流量计是通过对液相内管道横截面的测得速度分布进行积分而实现的。界面的时空位置也用相同的超声脉冲检测,这进一步给出了横截面空隙率。通过将该测量原理应用于直径为40 mm的水平管中的空气-水两相流,进行了一系列实验演示,其中空分在0至15 m / s。使用容积式流量计验证测量精度。我们还分析了分配在管横截面上的许多不同模式的超声测量线的液体速度分布面积积分的准确性。本方法也被确定为流速的脉动传感器,其随着复杂的气液界面行为而波动。

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