Integrated Production Optimization Leads Significant Gain from North Kuwait Jurassic Gas Challenging Deep Tight Carbonate Fields

Mohamed Abdel-Basset, Mohammad Al-Sharad, D. Al-Muhanna, Hind Bin Mutlaq, K. Al-Mefleh, Mansour Al-Awadhi, Y. Al-salali, Hanan Bushehrai, Khaled Nazar
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Abstract

This paper demonstrates the production optimization methodology being used by Kuwait Oil Company Jurassic gas that added significant contribution of approximately 37% of total field incremental production gain in 2021. Production optimization is a continuous iterative process to improve production, especially in mature fields. The North Kuwait Jurassic Gas field’s team has adopted an integrated enhanced and structured process to identify opportunities for production optimization with a pro-active approach focusing on flowing wells and rig-less interventions to tackle production challenges and achieve production targets. The Jurassic gas asset has unique mature-field challenges. It produces mainly from deep (up to 19,000 ft MD) high pressure and temperature, conventional and unconventional tight carbonate reservoirs, highly deviated to horizontal wells, different completion configurations (4.5in monobore, 3.5in × 5in liner, and 4.5in Multi-stages completions), wellbore cleaning and accessibility, scaling and flow assurance, high heterogeneity and permeability contrast among different flow units and dual permeability effect (matrix and natural fractures), production decline due to pressure depletion, liquid loading, high H2S (up to 13 mol%), surface production facilities limitations (e.g. limited MP and H2S handling capacity). effectiveness of subsequent stimulation treatments of such complex heterogeneous reservoir to improve well productivity and connect the natural fractures. The recovery from such complex heterogeneous reservoirs is extremely challenging if conventional development strategies are applied and need for appropriate production optimization methodology outlined here. The Heterogeneity Index process is utilized to rapidly demonstrate production gain opportunities via quick screening method of identifying preliminary candidate wells with anomalous behavior (over/under performance) for further analysis. The results from this screening tool were utilized to identify the families of type productivity problems at field and well levels with solution categories for production enhancement. Representative wells were selected for detailed diagnostics based on the relevance and size of productivity impact and the potential of its well deliverability. Once a few "top potential" wells were identified, production engineering workflows were implemented to assess and forecast the potential of production increase and to determine and evaluate the best solution design and intervention action. Detailed production optimization process provided recommendations of various remedial intervention solutions to improve well production potential via productivity enhancement ranging from complex matrix and fracturing stimulation, additional and/or re-perforations, wellbore cleaning, flow assurance solutions, to choke management. Other advanced technologies were applied to improve various strategies, including completions, perforation, stimulation, and production control. The executions of recommended interventions added significant contribution of approximately 37% of total field incremental production gain in 2021. Such production optimization process, experience and lessons learned will be shared where it can be used in analog fields.
综合生产优化为北科威特具有挑战性的深致密碳酸盐岩侏罗系气藏带来了巨大的收益
本文展示了科威特石油公司正在使用的生产优化方法,该方法在2021年为油田总产量增加了约37%的显著贡献。生产优化是一个不断迭代的过程,以提高产量,特别是在成熟油田。北科威特侏罗纪气田的团队采用了一种集成的增强和结构化流程,通过积极主动的方法,专注于流动井和无钻机干预,来识别生产优化的机会,以应对生产挑战并实现生产目标。侏罗系天然气资产面临着独特的成熟油田挑战。它主要产自深部(高达19,000 ft MD)高压高温、常规和非常规致密碳酸盐岩储层、大斜度到水平井、不同完井配置(4.5in单孔、3.5in × 5in尾管和4.5in多段完井)、井筒清洁和可达性、结垢和流动保障、不同流动单元之间的高非均质性和渗透率对比以及双重渗透效应(基质和天然裂缝)。由于压力耗尽、液体负载、高H2S(高达13 mol%)、地面生产设施限制(例如有限的MP和H2S处理能力),导致产量下降。对此类复杂非均质油藏进行后续增产处理,提高油井产能,打通天然裂缝。如果采用常规开发策略,并且需要适当的生产优化方法,那么从这种复杂的非均质油藏中进行开采是极具挑战性的。非均质性指数过程通过快速筛选方法识别初步候选井的异常行为(性能过高/过低),以快速显示产量增加的机会,以便进一步分析。该筛选工具的结果可用于识别油田和井级的产能问题类型,并提供提高产量的解决方案类别。根据产能影响的相关性和规模以及井的产能潜力,选择有代表性的井进行详细诊断。一旦确定了几口“最有潜力”的井,就会实施生产工程工作流程,以评估和预测增产潜力,并确定和评估最佳解决方案设计和干预措施。详细的生产优化过程提供了各种补救干预方案的建议,通过提高产能来提高油井的生产潜力,包括复杂基质和压裂增产、额外和/或再射孔、井筒清洗、流动保证解决方案以及节流管理。其他先进技术应用于改进各种策略,包括完井、射孔、增产和生产控制。推荐干预措施的实施为2021年油田总产量的增加贡献了约37%。这样的生产优化过程、经验和教训将被分享,并可用于模拟领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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