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The influence of viscosity on stability of foamy oil in the process of heavy oil solution gas drive

机译:稠油溶液气驱过程中粘度对泡沫油稳定性的影响

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Primary production from some heavy-oil reservoirs in the process of solution gas drive exhibits high primary recovery. This is because the formation and flow of foamy oil which indicated that gas was dispersed in the heavy oil and flow with oil phase when formation pressure was lower than bubble pressure. The stability of foamy oil was influenced by many issues including oil viscosity, the contents of dissolved gas, temperature and the pressure depletion rate. We mainly researched the influence of oil viscosity on stability of foamy oil in the process of heavy oil solution gas drive. Through sand-pack experiment, we researched foam quality and half-life period of foamy oil for different oil viscosity under atmosphere pressure and temperature of 25 °C, neglecting pressure depletion rate. Results indicated that as oil viscosity increased, the stability of foamy oil became better. Large solution viscosity plays an important role in retarding the transport of gas from solution to the growing bubble in the foamy oil because bubble volume increases much more slowly in viscous oils, coalescence is slowed dramatically. The curve between half-life period and oil viscosity had an inflection point and its corresponding oil viscosity can be used as proper viscosity suitable for heavy oil solution gas drive and sand-carrying cold production.
机译:在溶液气驱过程中,一些重油储层的初次开采表现出较高的初次采收率。这是因为,当地层压力低于气泡压力时,表明气体分散在重油中并以油相流动的泡沫油的形成和流动。泡沫油的稳定性受许多问题的影响,包括油的粘度,溶解气体的含量,温度和压力消耗率。我们主要研究了稠油溶液气驱过程中油粘度对泡沫油稳定性的影响。通过砂包实验,研究了在大气压力和25°C的温度下,忽略压力消耗率的情况下,不同粘度的泡沫油的泡沫质量和半衰期。结果表明,随着油粘度的增加,泡沫油的稳定性变好。大溶液粘度在阻止气体从溶液到泡沫油中不断增长的气泡的传输中起着重要作用,因为在粘性油中气泡体积的增加要慢得多,聚结作用显着减慢。半衰期与油粘度之间的曲线具有拐点,并且其相应的油粘度可以用作适合于重油溶液气驱和带砂冷生产的适当粘度。

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