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Application of Polymer Gels as Conformance Control Agents for Carbon Dioxide for Floods in Carbonate Reservoirs

机译:聚合物凝胶作为碳酸盐岩油藏洪水二氧化碳控制控制剂的应用

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With the production from mature oil fields declining, the increasing demand of oil urges towards more effective recovery of the available resources. Currently, the CO2 Floods are the second most applied EOR processes in the world behind steam injection. With more than 30 years of experience gained from CO2 flooding, successful projects have showed incremental oil recovery ranging from 7 to 15 % of the oil initially in place. Despite all of the anticipated success of CO2 floods, its viscosity nature is in heterogeneous and naturally fractured reservoirs is challenging; CO2 will flow preferentially through the easiest paths resulting in early breakthrough and extraction ineffectiveness leaving zones of oil intact. This research aims at investigating gel treatments and viscosified water-alternating-gas CO2 mobility control techniques. A set of experiments have been conducted to verify the effectiveness and practicality of the proposed mobility control approaches.Our research employed an imaging technique integrating an X-Ray CT scanner with a CT friendly aluminum coreflood cell. With the integrated systems, we were able to obtain real time images when processed provide qualitative and qualitative evaluations to the coreflood. The research studies included preliminary studies of CO2 and water injection performance in fractured and unfractured cores. These experiments provided a base performance to which the performances of the mobility control attempts were compared. We have applied the same methodology in evaluation of the experimental results to both conformance control gel treatments and viscosified water-alternating-gas CO2 mobility control. The gel conformance control studies showed encouraging results in minimizing the effect of heterogeneities directing the injected CO2 to extract more oil from the low permeability zones; the gel strength was evaluated in terms of breakdown and leakoff utilizing the production data aided with CT imaging analysis. The viscosified water coupled with CO2 investigations showed great promising results proving the superiority over neat CO2 injection. This research serves as a preliminary understanding to the applicability of tested mobility control approaches providing a base to future studies in this category of research.
机译:随着成熟油田的产量下降,石油需求的增加促使人们更加有效地回收可用资源。当前,二氧化碳驱是仅次于蒸汽注入的第二大应用最广泛的EOR工艺。凭借30年来从CO2驱油中获得的经验,成功的项目已显示出逐渐增加的石油采收率,占初始采出石油量的7%至15%。尽管可以预料到所有成功的CO2驱替措施,但其粘性性质仍存在于非均质油藏中,而天然裂缝性储层则具有挑战性。 CO2将优先通过最容易的路径流动,从而导致早期突破和开采效率低下,使油层保持完整。这项研究旨在研究凝胶处理和增粘的水交替气CO2迁移率控制技术。已经进行了一系列实验,以验证所提出的流动性控制方法的有效性和实用性。我们的研究采用了一种将X射线CT扫描仪与CT友好的铝芯溢流池相集成的成像技术。使用集成系统,我们可以在处理后获得实时图像,从而为岩心驱替提供定性和定性评估。研究包括对破裂和未破裂岩心的二氧化碳和注水性能的初步研究。这些实验提供了基本性能,将移动性控制尝试的性能与之进行了比较。我们将相同的方法应用于一致性控制凝胶处理和增粘的水交替气CO2迁移率控制的实验结果评估中。凝胶一致性控制研究显示出令人鼓舞的结果,可以最大程度地减少异质性的影响,该异质性将引导注入的CO2从低渗透率区域中提取更多的油;利用CT成像分析辅助的生产数据,根据击穿和渗漏评估了凝胶强度。粘稠的水加上二氧化碳的研究显示出了非常有希望的结果,证明了比纯净的二氧化碳注入具有优越性。这项研究是对经过测试的机动性控制方法的适用性的初步了解,为此类研究的未来研究奠定了基础。

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    Al Ali Ali 1986-;

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