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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Influence of Gas Injection on the In-Situ Oil Fraction of an Oil-Water Flow in Horizontal Pipes
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Influence of Gas Injection on the In-Situ Oil Fraction of an Oil-Water Flow in Horizontal Pipes

机译:注气对水平管内油水流动原位油分的影响

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In this work, an experimental study was made on gas injection into an oil-water flow in horizontal pipes with two unequal pipe diameters. Special attention was given to the influence of gas injection on the average in-situ oil fraction. Measurements were made for input water flow rates of 1.25-5 m~3/h, input oil flow rates of 0-8 m~3/h and input gas flow rates of 0-9 m~3/h. It was found that gas injection has a considerable influence on the in-situ oil fraction. In general, a small increase in the rate of air injection leads to greatly decreasing in-situ oil fractions. The in-situ oil fraction with gas injection decreases to a greater extent than that without gas injection, at the same input liquid flow rates. At a given input water flow rate, the value of the in-situ oil fraction in the pipe with the larger diameter is higher than that in the pipe with the smaller diameter. Furthermore, the drift flux models were extended to predict the average in-situ fractions of the oil phase in the intermittent three-phase flow regimes. A good agreement is obtained between theory and data, especially for the in-situ oil fraction range of 0.2-1.0.
机译:在这项工作中,对在两个直径不相等的水平管中向油水流中注入气体进行了实验研究。特别注意了注气对平均原位石油馏分的影响。对输入水流量为1.25-5 m〜3 / h,输入油流量为0-8 m〜3 / h,输入气体流量为0-9 m〜3 / h进行了测量。已经发现,气体注入对原位油分具有相当大的影响。通常,空气注入速率的小幅增加会导致原位油馏分大大减少。在相同的输入液体流速下,有气体注入的原位石油馏分比没有气体注入的原位石油馏分降低的程度更大。在给定的输入水流量下,直径较大的管道​​中的原位油分值要大于直径较小的管道中的原位油分值。此外,扩展了漂移通量模型,以预测间歇性三相流态中油相的平均原位分数。理论和数据之间取得了很好的一致性,尤其是在0.2-1.0的原位石油馏分范围内。

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