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Experimental Investigation on the Holdup Distribution of Oil-Water Two-Phase Flow in Horizontal Parallel Tubes

机译:实验调查抢劫油水两相流分布水平平行管

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An experimental investigation was conducted to study the holdup distribution of oil and water two-phase flow in two parallel tubes with unequal tube diameter. Tests were performed using white oil (of viscosity 52 mPa s and density 860 kg/m~3) and tap water as liquid phases at room temperature and atmospheric outlet pressure. Measurements were taken of water flow rates from 0.5 to 12.5 m~3/h and input oil volume fractions from 3 to 94 %. Results showed that there were different flow pattern maps between the run and bypass tubes when oil-water two-phase flow is found in the parallel tubes. At low input fluid flow rates, a large deviation could be found on the average oil holdup between the bypass and the run tubes. However, with increased input oil fraction at constant water flow rate, the holdup at the bypass tube became close to that at the run tube. Furthermore, experimental data showed that there was no significant variation in flow pattern and holdup between the run and main tubes. In order to calculate the holdup in the form of segregated flow, the drift flux model has been used here.
机译:一个实验进行了调查研究油和水的持枪抢劫分布两相流与不平等的两个平行管管直径。油的粘度52 860 mPa和密度公斤/米~ 3)和自来水为液相的房间温度和大气出口压力。水流速的测量0.5到12.5米~ 3 / h和输入石油体积分数从3到94%。不同的流动模式之间的映射和运行油水两相流时旁通管在平行管。流率,能找到一个大的偏差旁路和之间的平均油抢劫管道运行。分数在恒定水流速度,持枪抢劫在旁路管成为接近管运行。流没有明显变化运行和主之间的模式和抢劫管。形式的分离流动,漂流通量模型被用在这里。

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