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Recent Advances in Enhanced Oil Recovery Technologies for Unconventional Oil Reservoirs

机译:增强型石油储存技术增强储油技术的进展

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Unconventional resources have significantly transformed the landscape of the oil and gas industry. The primary recovery factor ranges anywhere from 2% to 8% for the various shale plays throughout the United States. Hence, it is imperative to exploit the vast potential of unconventional reservoirs and increase the recovery factors beyond primary depletion by implementing improved and enhanced oil recovery (IOR/ EOR) methods. This paper presents detailed review of the advances in IOR/EOR technologies applied to unconventional oil reservoirs. A thorough review of the pertinent published literature on IOR/EOR was performed. Results of EOR application to unconventionals shared by various operators in their investor presentations and press reports were also analyzed. The IOR/EOR studies were classified into laboratory experiments, numerical modeling and field laboratory trials (pilots). In addition, the field trials were also analyzed based on the representative shale plays. Most of the studies performed for the application of EOR technologies to unconventional oil reservoirs have been limited to experimental investigations and numerical simulation studies. The research revealed that miscible gas injection (produced gases, CO_2, etc.) is the most promising method among the EOR techniques (miscible gas, water flooding, surfactant, chemical and polymer). Experimental studies showed that CO_2 injection had the highest potential of improved recovery in unconventionals followed by produced gas injection and that diffusion was the most predominant mechanism. Surfactant injection showed the next best potential to increase oil recovery by altering the wettability of rock in laboratory experiments. The gas injection pilots showed that sufficient injectivity was achieved mainly due to the injection induced fractures and did not exhibit any significant effect of diffusion. Conformance control remains a big challenge especially due to the channeling of the gas through the fractures. Produced gas injection pilots in the Eagle Ford formation have demonstrated the greatest success in increasing oil recovery. However, there are many inconsistencies between the laboratory investigations and field trials that needs reconciliation. Further research is necessary to bridge the gap and improve the scaling from laboratory to field. This methodical study elicits the learnings and challenges from the application of different IOR/EOR technologies to unconventionals at various scales (micro to macro to field scale). In addition, ideas for future research are recommended to improve the understanding of the complex mechanisms of EOR in unconventional oil reservoirs. These include optimizing gas injection schemes (huff-n-puff, continuous injection) based on key parameters such as permeability and investigating fracture placement for improving the drainage area and inter-well communication.
机译:非传统资源显着改变了石油和天然气行业的景观。主要恢复因子范围从美国各种页岩扮演的各个位数为2%至8%。因此,通过实施改进和增强的溢油(IOR / EOR)方法,必须利用非常规储层的巨大潜力,并增加初级耗尽超出初级耗尽的恢复因素。本文提出了对适用于非传统油藏的IOR / EOR技术的进展的详细审查。对IOR / EOR相关的出版文献进行了彻底审查。还分析了EOR应用于各种运营商在投资者演示和新闻报告中共享的非传统申请的结果。 IOR / EOR研究分为实验室实验,数值建模和现场实验室试验(飞行员)。此外,还基于代表页岩剧分析了现场试验。为广州技术应用于非传统石油储层的大多数研究仅限于实验研究和数值模拟研究。该研究表明,混溶气体注入(产生的气体,CO_2等)是EOR技术中最有前景的方法(可混溶气体,水驱,表面活性剂,化学和聚合物)。实验研究表明,CO_2注射的潜力具有最高的潜力,在不传统的非传导中,产气注射,并且扩散是最占优势的机制。表面活性剂注射显示通过改变实验室实验中岩石的润湿性来提高石油回收的下一个最佳潜力。气体喷射导频显示,主要是由于注射诱导的骨折而实现了足够的注射性,并且没有表现出扩散的任何显着效果。一致性控制仍然是一个大挑战,特别是由于气体通过裂缝的窜流。 Eagle Ford Chadion中产生的气体喷射飞行员已经证明了增加石油回收的最大成功。但是,在需要和解的实验室调查和现场试验之间存在许多不一致。进一步的研究是弥合差距并改善实验室划分的缩放。该方法研究引发了不同IOR / EOR技术在各种尺度的非传统(微量到宏对现场规模)的非传统的情况下的学习和挑战。此外,建议改善未来研究的想法,以改善对非传统油藏中EOR复杂机制的理解。这些包括基于诸如渗透率和研究骨折放置的关键参数来优化气体注射方案(Huff-N-Puff,连续注射),用于改善排水区和井间通信。

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