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CO 2 and viscosity breaker assisted steam huff and puff technology for horizontal wells in a super-heavy oil reservoir

机译:CO 2 和增粘剂辅助的超重油藏水平井中的蒸汽吞吐技术

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In order to improve the recovery effect of steam huff and puff in a super-heavy oil reservoir, the displacement efficiency of CO2and viscosity breaker assisted steam flooding was studied through in-lab displacement experiments. The viscosity reduction mechanism of CO2and viscosity breaker assisted steam huff and puff for horizontal wells was realized by numerical simulation. The results show that the displacement efficiency of CO2and viscosity breaker assisted steam flooding (80.8%) is higher than that of steam flooding (65.4%). The CO2and viscosity breaker assisted steam huff and puff technology for horizontal wells realizes the rolling replacement of viscosity reduction of viscosity breaker, CO2and steam, thus effectively reducing the steam injection pressure, expanding the steam sweep area, i.e., expanding the viscosity reduction region and improving oil production rate. The viscosity region can be divided into four compound viscosity reduction areas according to temperature distribution and viscosity reduction mechanism. They are steam compound viscosity reduction region, hot water compound viscosity reduction region, low temperature water compound viscosity reduction region, and CO2-viscosity breaker compound viscosity reduction region. Field tests show that the CO2and viscosity breaker assisted steam huff and puff technology for horizontal wells is effective in reducing viscosity and improving production of super-heavy oil reservoirs with deep and thin layers, deep and heavy layers, shallow and thin layers.
机译:为了提高超稠油油藏蒸汽吞吐的采收率,通过室内置换实验研究了CO2和破胶剂辅助蒸汽驱的驱替效率。通过数值模拟,实现了CO2和破胶剂辅助水平井蒸汽吞吐的减粘机理。结果表明,CO2和破胶剂辅助驱油的驱油效率(80.8%)高于驱油驱油的驱油效率(65.4%)。水平井采用CO2和增粘剂辅助蒸汽吞吐技术,实现了减粘剂,CO2和蒸汽降粘的滚动替代,从而有效降低了注汽压力,扩大了汽扫面积,扩大了降粘范围,改善了产油率。根据温度分布和粘度降低机理,粘度区域可分为四个复合粘度降低区域。它们是蒸汽化合物粘度降低区域,热水化合物粘度降低区域,低温水化合物粘度降低区域和CO 2增粘剂化合物粘度降低区域。现场测试表明,CO2和增粘剂辅助的水平井蒸汽吞吐技术可有效降低粘度并提高深,薄层,深,重层,浅和薄层的超重油藏的产量。

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