LIU Guo-qiang, SUN Li-cheng, YAN Chang-qi, TIAN Dao-gui. Distribution Characteristics of Interfacial Parameter in Downward Gas-liquid Two-phase Flow in Vertical Circular Tube[J]. Atomic Energy Science and Technology, 2014, 48(10): 1797-1802. DOI: 10.7538/yzk.2014.youxian.0002
Citation: LIU Guo-qiang, SUN Li-cheng, YAN Chang-qi, TIAN Dao-gui. Distribution Characteristics of Interfacial Parameter in Downward Gas-liquid Two-phase Flow in Vertical Circular Tube[J]. Atomic Energy Science and Technology, 2014, 48(10): 1797-1802. DOI: 10.7538/yzk.2014.youxian.0002

Distribution Characteristics of Interfacial Parameter in Downward Gas-liquid Two-phase Flow in Vertical Circular Tube

  • Experimental study was performed on distribution characteristics of interfacial parameters of downward gas-liquid flow in a vertical circular tube with the measurement by a two-sensor optical fiber probe. The test section is a circular pipe with the inner diameter of 50 mm and the length of 2 000 mm. The superficial velocities of the gas and the liquid phases cover the ranges of 0.004-0.077 m/s and 0.43-0.71 m/s, respectively. The results show that the distributions of the interfacial parameters in downward bubbly flows are quite different from those in upward bubbly flows. For the case of upward flow, the parameters present the “wall-peak” or “core-peak” distributions, but for the case of downward flow, they show “wall-peak” or “wide-peak” distributions. The average value of void fraction in vertical downward flow is about 119.6%-145.0% larger than that in upward flow, and the interfacial area concentration is about 18.8%-82.5% larger than that in upward flow. The distribution of interfacial parameters shows an obvious tendency of uniformity.
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