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Miscible oil recovery utilizing N2 and/or HC gases in CO2 injection

机译:在CO2注入过程中利用N2和/或HC气体混溶采油

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Carbon dioxide miscible injection is one of the non-thermal effective enhanced oil recovery (EOR) methods. In the Middle East, particularly Abu Dhabi, pilot testing is already implemented in the Rumaitha Field for CO2 miscible injection. This paper investigates the means of improving CO2 miscible injection by enriching it with N2 and HC gases. The emphasis is on identifying CO2 solvent mixtures with reduced MMP to achieve miscibility at reasonable injection pressures in Abu Dhabi fields. The minimum miscibility pressure (MMP) of targeted oils from Abu Dhabi carbonate reservoirs with mixtures of N2, CH4, C2H6, and HC rich gases of varying composition with CO2 injection gas are evaluated through simulation. The first contact miscibility (FCM) and the multiple contact miscibility (MCM) of injected gases/oil mixture under reservoir temperature have been determined using WINPROP module of the Computer Modeling Group (CMG) simulator. In addition, the corresponding oil recovery factors for various N2/CO2 content displacements were calculated by l-D compositional simulation of slim tube using BUILDER and GEM module of CMG Simulator. Results show that miscibility is predicted to occur with multiple contact miscibility (MCM): vaporization and/or condensation mechanisms. The increase of C2H6 concentration in the CO2 injected gas reduced MMPs for targeted Oil 1 by 100 psi/10 mol%. However, N2, CH4 and HC rich gas increments in CO2 injected gas increased the MMPs for targeted Oil 1. MMP was observed to be 2300 psi for pure ethane with Oil-1. In addition, MMPs for targeted oils with N2/C2H6 and N2/CH4 injected gas mixtures are assessed. This study can open possibilities for future enriching of CO2 and N2 miscible injection to improve miscibility and recovery Of oil.
机译:二氧化碳可混溶注入是非热有效提高采收率(EOR)的方法之一。在中东,特别是阿布扎比,Rumaitha油田已经对二氧化碳混溶注入进行了中试。本文研究了通过富集N2和HC气体来改善CO2混相注入的方法。重点在于确定MMP降低的CO2溶剂混合物,以在阿布扎比油田以合理的注入压力实现混溶。通过模拟评估了来自阿布扎比碳酸盐岩储层的目标油的最低混溶压力(MMP),该混合物具有不同组成的N2,CH4,C2H6和HC富气与CO2注入气的混合物。已使用计算机建模组(CMG)模拟器的WINPROP模块确定了在储层温度下注入的气体/油混合物的第一接触混溶性(FCM)和多次接触混溶性(MCM)。此外,使用CMG Simulator的BUILDER和GEM模块通过细管的1-D组成模拟,计算了各种N2 / CO2含量驱替的相应采油系数。结果表明,与多种接触混溶性(MCM)会发生混溶性:汽化和/或冷凝机制。注入二氧化碳的气体中C2H6浓度的增加使目标油1的MMP降低了100 psi / 10 mol%。但是,在注入CO2的气体中,富含N2,CH4和HC的气体增加了目标油1的MMP。M-1被观察到,纯乙烷与Oil-1的MMP为2300 psi。此外,还评估了具有N2 / C2H6和N2 / CH4混合气体的目标油的MMP。这项研究可以为将来富集CO2和N2混溶注入以改善油的混溶性和回收率提供可能性。

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