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Increasing Oil Recovery with CO2 Miscible Injection: Thani Reservoir, Abu- Dhabi Giant Off-Shore Oil Field Case Study

机译:增加石油回收与二氧化碳混溶注射:Thani水库,ABU-Dhabi巨型离岸油田案例研究

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This paper aims to study the miscibility features of CO2 miscible injection to enhanced oil recovery from Thani-III reservoir. A Comprehensive simulation model was used to determine multi contact miscibility and suitable equation of state with CO2 as a separate pseudo component using one of the industry’s standard simulation software. Experimental PVT data for bottom hole and separator samples including compositional analysis, differential liberation test, separator tests, constant composition expansion, viscosity measurements and swelling tests for pure CO2 were used to generate and validate the model. In addition to that, simulation studies were conducted to produce coreflooding and slimtube experimental models, which were compared with the conclusions drawn from experimental results. Results of this study have shown comparable results with the lab experimental data in regards to minimum miscibility pressure (MMP) calculation and recovery factor estimation, where the marginal errors between both data sets were no more than 7% at its worst. Results from this study are expected to assist the operator of this field to plan and implement a very attractive enhanced oil recovery program, giving that other factors are well accounted for such as asphaltene deposition, reservoir pressure maintenance, oil saturation, CO2 sequestering and choosing the most appropriate time to maximize the net positive value (NPV) and expected project gain.
机译:本文旨在研究二氧化碳混溶注射的混溶性特征,以加强储存的储存。用于使用业界标准仿真软件之一,使用二氧化碳为单独的伪组件来确定多联络溶解和合适的状态方程。用于底孔和隔膜样品的实验PVT数据,包括组成分析,差异解放试验,分离器测试,恒定CO2的恒定组成膨胀,粘度测量和溶胀试验,用于产生并验证该模型。除此之外,还进行了仿真研究,以生产核心开心和纤维管实验模型,与从实验结果中得出的结论进行比较。该研究的结果表明了对LAB实验数据的可比结果,关于最小混溶性压力(MMP)计算和恢复因子估计,其两个数据集之间的边缘误差在其最差下不超过7%。该研究的结果预计将协助该领域的运营商计划和实施非常有吸引力的增强型石油恢复计划,使其他因素占沥青质沉积,储层压力维护,油饱和,二氧化碳依赖性和选择最合适的时间最大化净正值(NPV)和预期的项目收益。

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