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Air-SAGD technology for super-heavy oil reservoirs

机译:适用于超重油藏的Air-SAGD技术

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The air oxidation of super-heavy oil at low temperature was studied in laboratory and its influences on oil viscosity, component and steam sweep efficiency before and after air-injection were analyzed. The feasibility, operation mode and air flooding effect at the late stage of steam assisted gravity drainage (SAGD) were investigated by numerical simulation. The experimental results show for vertical-horizontal well pair SAGD test area of Xing VI Formation in Block Du 84 of Liaohe Oilfield, the low temperature oxidation occurred between 150–250 °C (steam chamber temperature), the oil viscosity increased greatly after low temperature oxidation, consequently, the oil displacement efficiency dropped sharply. Three development methods in the late stage of SAGD were simulated, i.e., steam + air low temperature oxidation, only air low temperature oxidation and only air high temperature oxidation. By comparing production dynamic curves and residual oil distribution etc., high temperature oxidation reduced the heat loss in late stage of SAGD, recovered the residual oil effectively, and prolonged reservoir development time.
机译:在实验室研究了超重油在低温下的空气氧化作用,分析了其对注油前后油黏度,成分和蒸汽吹扫效率的影响。通过数值模拟研究了蒸汽辅助重力排水(SAGD)后期的可行性,运行方式和注气效果。实验结果表明,辽河油田杜84块兴六组垂直水平井对SAGD测试区,低温氧化发生在150-250°C(汽室温度)之间,低温后油黏度大大增加氧化,因此,驱油效率急剧下降。模拟了SAGD后期的三种开发方法,即蒸汽+空气低温氧化,仅空气低温氧化和仅空气高温氧化。通过比较生产动态曲线和渣油分布等,高温氧化减少了SAGD后期的热损失,有效地回收了渣油,延长了油藏开发时间。

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