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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Laboratory investigation of the factors impact on bubble size, pore blocking and enhanced oil recovery with aqueous Colloidal Gas Aphron
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Laboratory investigation of the factors impact on bubble size, pore blocking and enhanced oil recovery with aqueous Colloidal Gas Aphron

机译:水性胶态气Aphron对气泡大小,孔堵塞和提高油采收率的影响因素的实验室研究

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Colloidal Gas Aphron as a mobility control in enhanced oil recovery is becoming attractive; it is also designed to block porous media with micro-bubbles. In this paper, the effects of surfactant concentration, polymer concentration, temperature and salinity on the bubble size of the Colloidal Gas Aphron were studied. Effects of injection rates, Colloidal Gas Aphron fluid composition, heterogeneity of reservoir on the resistance to the flow of Colloidal Gas Aphron fluid through porous media were investigated. Effects of Colloidal Gas Aphron fluid composition and temperature on residual oil recovery were also studied. The results showed that bubble growth rate decreased with increasing surfactant concentration, polymer concentration, and decreasing temperature, while it decreased and then increased slightly with increasing salinity. The obvious increase of injection pressure was observed as more Colloidal Gas Aphron fluid was injected, indicating that Colloidal Gas Aphron could block the pore media effectively. The effectiveness of the best blend obtained through homogeneous sandpack flood tests was modestly improved in the heterogeneous sandpack. The tertiary oil recovery increased 26.8?% by Colloidal Gas Aphron fluid as compared to 20.3?% by XG solution when chemical solution of 1?PV was injected into the sandpack. The maximum injected pressure of Colloidal Gas Aphron fluid was about three times that of the XG solution. As the temperature increased, the Colloidal Gas Aphron fluid became less stable; the maximum injection pressure and tertiary oil recovery of Colloidal Gas Aphron fluid decreased.
机译:胶体气Aphron作为提高采油率的流动性控制方法正变得有吸引力。它也被设计用来阻止带有微气泡的多孔介质。本文研究了表面活性剂浓度,聚合物浓度,温度和盐度对胶体气瓶的气泡尺寸的影响。研究了注入速率,胶态气Aphron流体组成,储层非均质性对胶态气Aphron流体通过多孔介质流动的阻力的影响。还研究了胶体气Aphron流体组成和温度对剩余油采收率的影响。结果表明,气泡生长速率随着表面活性剂浓度,聚合物浓度和温度的降低而降低,但随着盐度的增加而降低,然后略有增加。随着胶态气Aphron液注入量的增加,注射压力明显增加,表明胶态气Aphron可以有效地堵塞孔隙介质。通过均质沙堆洪水测试获得的最佳掺混料的有效性在非均质沙堆中得到了适度提高。当将1?PV的化学溶液注入沙袋中时,胶态气Aphron流体的三次采油量提高了26.8%,而XG溶液的增收率为20.3%。胶态气Aphron流体的最大注入压力约为XG溶液的三倍。随着温度的升高,胶体气Aphron流体变得不稳定。胶体气Aphron流体的最大注入压力和三次采油率降低。

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