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Counter-Current and Co-Current Gas Kicks in 'Horizontal' Wells: Non-Newtonian Rheology Effects

机译:“水平”井中的逆流和顺流气塞:非牛顿流变效应

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Results from experiments conducted in downward liquid-gas flows in inclined, eccentric annular pipes, with water-air and water-polymer-air mixtures as the working fluids, are presented. The gas was injected near the middle of the test-section length. This flow is directly relevant to what is found in down-grade portions of "horizontal" wells. Flow maps, in terms of liquid and gas superficial velocities, indicating the transitions between counter-current and co-current gas flows have been determined experimentally for four dip angles. The counter-current gas flow observed was always in the slug regime while the co-current one appeared as stratified. Counter-current flow fraction and void fraction measurements were carried out at various liquid superficial velocities and gas-injection rates and correlated to visual observations through a full-scale transparent test section. Results indicate that increase of the liquid yield point favors the development of counter current flow which is shown to occur at representative liquid superficial velocities and gas injection rates. Thus, counter-current flow can be easily generated at small downward dip angles, within the practical range of liquid superficial velocity for drilling operations, especially at low gas-injection rates.
机译:给出了在倾斜的,偏心的环形管中以液态空气-水和水-聚合物-空气混合物作为工作流体向下流动的实验结果。在测试段长度的中间附近注入气体。该流量与“水平”井下坡部分中发现的流体直接相关。就液体和气体的表观速度而言,指示出逆流和顺流气流之间的过渡的流图已经通过实验确定了四个倾角。观察到的逆流气流始终处于团状状态,而并流气流则呈分层状。在不同的液体表观速度和气体注入速率下进行逆流流动分数和空隙分数的测量,并通过全尺寸透明测试部分将其与目测相关联。结果表明,液体屈服点的增加有利于逆流的发展,逆流的产生是在代表性的液体表观速度和气体注入速率下发生的。因此,在用于钻井操作的液体表观速度的实际范围内,特别是在低气体注入速率下,可以在小的向下倾角处容易地产生逆流。

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