史殊哲,吴晓东,韩国庆,安永生. 内边界旋转的垂直井筒气液两相流型和压降梯度[J]. 石油钻采工艺,2019,41(1):89-95.. DOI: 10.13639/j.odpt.2019.01.015
引用本文: 史殊哲,吴晓东,韩国庆,安永生. 内边界旋转的垂直井筒气液两相流型和压降梯度[J]. 石油钻采工艺,2019,41(1):89-95.. DOI: 10.13639/j.odpt.2019.01.015
SHI Shuzhe, WU Xiaodong, HAN Guoqing, AN Yongsheng. Flow pattern and pressure gradient of the gas-liquid two-phase flow in the vertical wellbore with rotary inner boundary[J]. Oil Drilling & Production Technology, 2019, 41(1): 89-95.. DOI: 10.13639/j.odpt.2019.01.015
Citation: SHI Shuzhe, WU Xiaodong, HAN Guoqing, AN Yongsheng. Flow pattern and pressure gradient of the gas-liquid two-phase flow in the vertical wellbore with rotary inner boundary[J]. Oil Drilling & Production Technology, 2019, 41(1): 89-95.. DOI: 10.13639/j.odpt.2019.01.015

内边界旋转的垂直井筒气液两相流型和压降梯度

Flow pattern and pressure gradient of the gas-liquid two-phase flow in the vertical wellbore with rotary inner boundary

  • 摘要: 井筒中泵杆的存在会对井筒内气液两相流动产生干扰,进而影响流型和压力梯度,而井筒内压力梯度的计算是油气井生产优化的重要部分。实验采用内径Ø88.9 mm,长7 m且含有螺杆泵的部分透明有机玻璃管,进行了不同转速的气液两相流实验 ,得到了在螺杆泵旋转时,泡状流向段塞流的转换界限 ;并与无杆的流型转换模型进行对比,得到了0 r/min、30 r/min、60 r/min、90 r/min转速下改进的流型转换模型;根据实验数据对有杆井筒内不同转速下压力梯度变化的修正,得到不同转速下的压力梯度公式 。结果表明,在液相表观速度相同的情况下,无杆井筒中更早发生泡状流向段塞流的转换;随着转速增加,流动摩擦阻力同时增大,增大幅度比较小;随着气相表观速度的提高,总压力梯度逐渐降低,压力梯度的降低速率逐渐变小。

     

    Abstract: The existence of sucker rod in the wellbore can interfere with the gas-liquid two-phase flow in the wellbore and then influence its flow pattern and pressure gradient, while the calculation of the pressure gradient in the wellbore is an important part of oil/gas well production optimization. Gas-liquid two-phase flow experiments were carried out at different rotation speeds by using the partially transparent plexi glass tubular with progressive cavity pump (ID Ø88.9 mm, length 7 m). And accordingly, the transition interface from the bubble flow to the plug flow during the rotation of progressive cavity pump was obtained. Then, it was compared with the flow pattern transition model without sucker rod, and the flow pattern transition model modified at the rotation speed of 0 r/min, 30 r/min, 60 r/min and 90 r/min was obtained. Finally, the pressure gradient formula at different rotation speeds was set up after the pressure gradient at different rotation speeds in the wellbore with sucker rod was corrected according to the experimental data. It is indicated that the transition from the bubble flow to the plug flow occurs earlier in the wellbore without sucker rod when the liquid-phase apparent velocity is the same. With the increase of the rotation speed, the flow friction resistance increases and its increasing amplitude is smaller. With the increase of the gas-phase apparent velocity, the total pressure gradient and the decreasing rate of pressure gradient decline gradually.

     

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