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Production features of steam and gas push: Comparative analysis with steam assisted gravity drainage

机译:蒸汽和气体推动的生产特征:与蒸汽辅助重力排水的对比分析

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Using the numerical simulation method and the drafting software of Surfer, we charted the temperature fields and remaining oil saturation fields of steam assisted gravity drainage (SAGD) and steam and gas push (SAGP) in oil drainage periods, including beginning, peak stage and last stage of oil drainage. An intuitive and reliable comparative research was done about the formation and expanding process of steam chambers, the shape of steam chambers and flow features in different oil drainage periods. The recovery effectiveness of the two production methods was compared. The results show that: in the SAGP production process, the lateral expansion of the steam chamber is faster than that in SAGD and the vertical expansion slower than that in SAGD. By adding non-condensate gas in the steam of SAGD, it can reduce the amount of steam injection, increase thermal efficiency, improve the ratio of oil to steam, and ultimately improve the development effectiveness of SAGD. The case study indicates that SAGP can slow the decline of oil rate and extend the development time of heavy oil reservoir and improve the development effectiveness.
机译:使用Surfer的数值模拟方法和绘图软件,绘制了在排油期(包括开始,高峰期和末期)的蒸汽辅助重力排水(SAGD)和蒸汽和气体推动(SAGP)的温度场和剩余油饱和度场的图表。排油阶段。对蒸汽腔的形成和扩展过程,蒸汽腔的形状和不同排油时期的流动特征进行了直观,可靠的比较研究。比较了两种生产方法的回收率。结果表明:在SAGP生产过程中,蒸汽室的横向膨胀比SAGD快,而垂直膨胀比SAGD慢。通过在SAGD的蒸汽中添加非凝析气,可以减少注汽量,提高热效率,提高油蒸汽比,最终提高SAGD的开发效率。实例研究表明,SAGP可以减缓油速率的下降,延长稠油油藏的开发时间,提高开发效率。

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