利用水力压裂技术提高阿曼苏丹国Nimr油田的产能和注入能力挑战高渗透压裂现状

M. Al Kalbani, Ali Al Ghaithi, S. Al Kindi, A. Christiawan, R. Yuyan
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引用次数: 2

摘要

近年来,阿曼苏丹国Nimr油田群的高渗透水力压裂技术发展势头迅猛。尽管对于典型的长时间干预(如水力压裂),延迟生产井存在固有阻力。在某种程度上,这是由于压裂前的准备工作,包括拆除低等级的现有完井,拆除人工举升泵,安装压裂完井,最后是压裂后的再完井。除此之外,不理想的压裂液可能会损害油井的产能,特别是在中高粘度油的情况下。因此,Nimr油田高渗透地层的水力压裂决定了最佳的候选选择过程。本文提出了从回归模型中得出的明确的候选选择标准,以及设计相关的优化,如减少凝胶负载设计的利用和提高氧化破碎剂浓度,以更好地清理和返排。作为本文研究的一部分,由于从压裂前到压裂后的周转时间更短,因此压裂注水井的风险更小。它还为在注水井性能不佳的油田提高波及效率提供了机会。Nimr油田群中的注入井通常针对高渗透率地层(10-200 mD),但由于注入水的质量以及温度和压力变化引起的自结垢程度,结皮现象很常见。因此,压裂的引入提供了一种有效的技术来绕过损害并产生更大的有效导流井眼半径。本文介绍了在2021年至2022年期间使用水力压裂对几个性能较差的生产井和注水井进行修复的情况。将注入效果以及压裂后波及效率与压裂前进行了比较。对这些井的注入模式也进行了评估,结果显示,在没有快速窜水的情况下,对附近的井有很大的压力支撑。这使得之前由于含水层压力支撑不足而关闭的一些生产井得以恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Productivity and Injectivity in the Sultanate of Oman's Nimr Cluster Using Hydraulic Fracturing; Challenging The Status Quo in High Permeability Fracturing
High permeability hydraulic fracturing in Nimr cluster of oil fields within the Sultanate of Oman has been gaining momentum in recent years. This is despite of the inherent resistance towards deferring producing wells for a typically long intervention such as hydraulic fracturing. In part, that is due to the required pre fracturing preparation which ranges from removing low grade existing completion, removal of artificial lift pumps, installing fracturing completion, and finally post fracturing recompletion. This is in addition to damage presented by less-than-optimal fracturing fluids which may impair well productivity, especially in cases where oil is of moderate to high viscosity. Hence hydraulic fracturing of high permeability formations within Nimr fields dictated an optimal candidate selection process. This paper presents well-defined candidate selection criteria derived from regression modelling, in addition to design related optimizations such as the utilization of reduced gel loading designs and enhancing oxidizing breaker concentration for better cleanup and flowback. As part of the study within this paper, fracturing water injectors presented a less risky endeavor due to a shorter turnaround time from pre to post fracturing. It also presented an opportunity to enhance sweep efficiency in fields where water injectors are underperforming. Injector wells within the Nimr cluster of fields generally target high permeability formations (10-200 mD), however due to the quality of injected water and the degree of self-scaling due to temperature and pressure changes, skin build up is common. Hence the introduction of fracturing presented an efficient technique to bypass damage and generate larger conductive effective wellbore radii. This paper describes the restoration of several poorly performing producer and injectors that were treated between 2021 and 2022 using hydraulic fracturing. Injection results as well as post fracturing sweep efficiencies were compared to those prior to fracturing. These wells were also assessed in perspective of their injection patterns where results have shown substantial pressure support to nearby wells without fast-tracking water breakthrough. This resulted in the revival of some producer wells that were previously closed in due to poor aquifer pressure support.
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