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Experimental modeling of the SAGD process-enhancing SAGD performance with periodic stimulation of the horizontal producer

机译:周期性刺激水平生产者的SAGD工艺增强SAGD性能的实验模型

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Experiments on initial stages of the steam-assisted gravity drainage (SAGD) process were carried out, using 2-D scaled reservoir models, to investigate production process and performance. Expansion of the initial steam chamber, its shape and area, and temperature distributions were visualized using video and themal-video pictures. The relationship between isotherms and steam chamber interface was investigated to study the drainage mechanism. The temperature at the interface where the steam chamber was expanding was observed to remain nearly constant at 80 degree. Effect of vertical spacing between the two horizontal wells on oil recovery was also investigated. For the case of conventional SAGD, oil production rate increased with increasing vertical spacing; however, the lead time for the gravity drainage to initiate oil production became longer. The results suggest that L can be used as a governing factor to evaluate production rate and lead time in the initial stage of the SAGD process. Based on theese experimental results, the SAGD process was modified: the lower production well was intermittently stimulated by steam injection, in conjunction with continuous steam injection in the upper horizontal injector. Using the modified process (named SAGD-ISSLW), the time to generate near breakthrough condition between two wells was shortened, and oil production was enhanced at the rising chamber stage compared with that of the conventional SAGD process.
机译:利用二维比例储层模型进行了蒸汽辅助重力排水(SAGD)工艺初始阶段的实验,以研究生产工艺和性能。初始蒸汽室的膨胀,其形状和面积以及温度分布可通过视频和热像仪图像进行可视化。研究了等温线与蒸汽室界面之间的关系,以研究排水机理。观察到蒸汽室膨胀的界面处的温度几乎保持恒定在80度。还研究了两个水平井之间的垂直间距对石油采收率的影响。对于常规的SAGD,采油率随着垂直间距的增加而增加。但是,重力排水引发采油的前置时间变长了。结果表明,L可以用作评估SAGD工艺初始阶段的生产率和交货时间的控制因素。根据这些实验结果,对SAGD工艺进行了修改:下部注水井通过蒸汽注入间歇地增产,同时在上部水平注入器中连续注水。与传统的SAGD工艺相比,使用改进的工艺(称为SAGD-ISSLW),缩短了在两口井之间产生接近突破条件的时间,并且在上升室阶段提高了采油量。

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