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首页> 外文期刊>International Journal of Multiphase Flow >Modeling of three-phase heavy oil-water-gas bubbly flow in upward vertical pipes
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Modeling of three-phase heavy oil-water-gas bubbly flow in upward vertical pipes

机译:垂直竖管中三相重油-水-气气泡流的模拟

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摘要

A bubbly gas-bubbly oil flow pattern may occur when water, heavy oil and gas flow simultaneously in vertical pipes in such a way that water is the continuous phase. In this work, a one-dimensional, thermal, transient two-fluid mathematical model, for such flow, is presented. The model consists of mass, momentum and energy conservation equations for every phase whose numerical solution is based on the finite difference technique in the implicit scheme. The model is able to predict pressure, temperature, volumetric fraction and velocity profiles. For accurate modeling of multiphase flows, the key issue is to specify the adequate closure relationships, thus drag and virtual mass forces for the gas and oil phases were taken into account and special attention was paid on the gas-oil drag force. When this force was included into the model it was found that: (1) such force had the same order of magnitude than the oil drag force and both forces were smaller than the gas drag force, (2) the pressure, gas and oil velocities and gas and oil volume fraction profiles were affected, (3) the numerical stability was increased. The model predictions are in agreement with experimental data reported in literature.
机译:当水,重油和气体同时在垂直管中以水为连续相的方式流动时,可能会出现气泡状气泡。在这项工作中,提出了一种针对这种流动的一维热瞬态两流体数学模型。该模型由每个阶段的质量,动量和能量守恒方程组成,其数值解基于隐式方案中的有限差分技术。该模型能够预测压力,温度,体积分数和速度曲线。为了对多相流进行精确建模,关键是要指定适当的闭合关系,因此要考虑到气相和油相的阻力和虚拟质量力,并特别注意了油气阻力。当将此力包括在模型中时,发现:(1)这种力的大小与油阻力相同,并且两个力都小于气体阻力,(2)压力,气体和油的速度天然气和石油体积分数分布受到影响,(3)数值稳定性增加。模型预测与文献报道的实验数据一致。

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