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Predicting the Method of Oil Recovery in the Gas-assisted Gravity Drainage Process

机译:气体辅助重力排水过程中的采油方法预测

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Gas-assisted gravity drainage (GAGD), solving the problem of low volume sweep coefficient for continuous gas injection (CGI) or water-alternating-gas injection (WAG) and increasing the ultimate recovery to a great extent, is a latest method for enhancing oil recovery. However, no effective predicting methods of oil recovery for GAGD exists. The oil recovery is determined by a set of parameters, such as heterogeneity of the formation, wettability, oil and gas density, oil and gas viscosity, viscous force, capillary force, gravity, gas injection rate, and other controllable parameters. Based on the research of producing mechanism of GAGD and dimensional analysis method, the authors analyzed four dimensionless varies, capillary number, bond number, gravity number, and gravity drainage number, and evaluated its influence on oil recovery. Considering the effect of wettability, viscosity ratio, and the difference between oil density and gas density, gravity number and gravity drainage number are modified. Relationship of gravity drainage number with recovery is re-established by experiments and case data. Finally a new predicting method of oil recovery for GAGD is set up. Application shows that this method is far more suitable for GAGD and its predictive result is more reasonable.
机译:气体辅助重力排水(GAGD)解决了连续注气(CGI)或水交替注气(WAG)的体积扫描系数低的问题,并在很大程度上提高了最终采收率,这是提高天然气采收率的最新方法。采油。但是,目前尚没有有效的GAGD采收率预测方法。采油量由一组参数确定,例如地层的非均质性,润湿性,油气密度,油气粘度,粘滞力,毛细作用力,重力,注气速率和其他可控参数。在研究GAGD产生机理和尺寸分析方法的基础上,分析了毛细管数,键数,重力数和重力排油数四个无量纲变化,并评价了其对采油量的影响。考虑到润湿性,粘度比以及油密度与气体密度之差的影响,对重力数和重力排水数进行了修改。实验和案例数据重新建立了重力排水量与采收率之间的关系。最后建立了GAGD采油量预测的新方法。应用表明,该方法更适合于GAGD,其预测结果更加合理。

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