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Energy efficiency and greenhouse gas emissions of current steam injection process and promising steam based techniques for heavy oil reservoirs

机译:电流蒸汽喷射工艺的能效和温室气体排放和大汽油储层蒸汽技术

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摘要

Steam injection process has been the prevailing technique for heavy oil and bitumen extraction in the past decades, but the recovery performance and energy efficiency are poor, especially in oil reservoirs with harsh conditions and severe heterogeneity. With global requirements on energy conservation and emission reduction, it is of great significance to improve current techniques or find new techniques to promote the energy efficiency of steam injection process and mitigate associated greenhouse gas emissions. In this study, the energy efficiency and CO2 emissions of current steam injection processes were evaluated, along with sensitivity analysis of various influencing factors. Cyclic steam stimulation (CSS) process was taken as an example to study the production and energy efficiency performance of steam injection. The results show that the steam to oil ratio, energy intensity and CO2 emissions all rise with the increasing crude oil viscosity, but fall with the increase of oil saturation, reservoir temperature, bottom hole steam quality and reservoir heat efficiency. Field history analysis about CSS process shows that the production performance of CSS process was dominated by different factors with the proceeding of oil production, and gas injection assisted CSS process can effectively enhance oil recovery, improve energy efficiency and mitigate CO2 emissions. Finally, the improved steam injection techniques are discussed to shed some lights on the efficient exploitation of heavy oil reservoirs.
机译:蒸汽喷射过程是过去几十年中重油和沥青提取的现行技术,但恢复性能和能效差,特别是在具有恶劣条件和严重的异质性的油藏中。通过全球对节能和减排的要求,提高电流技术或查找新技术具有重要意义,以促进蒸汽喷射过程的能效,减轻相关的温室气体排放。在该研究中,评估了当前蒸汽喷射过程的能量效率和CO2排放,以及各种影响因素的敏感性分析。采用循环蒸汽刺激(CSS)工艺作为研究蒸汽喷射的生产和能效性能的示例。结果表明,蒸汽与油比,能源强度和二氧化碳排放均随着原油粘度的增加,但随着油饱和,储层温度,底部空穴蒸汽质量和储层热效率的增加而下降。关于CSS工艺的现场历史分析表明,CSS过程的生产性能由具有产油的过程的不同因素,气体注射辅助CSS工艺可以有效提高储油,提高能源效率和减轻二氧化碳排放。最后,讨论了改进的蒸汽喷射技术,以揭示重油储层的有效开采。

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