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Drilling and Completion Fluids Design for Horizontal Well Drilling - Case Histories from Kuwait Field

机译:科威特领域水平井钻井钻井和完井流体设计

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This paper presents drilling and completion fluids design for drilling long lateral / horizontal wells in a North Kuwait field and its field application on well RA-AAA, RA-BBB, RA-CCC and RA-DDD. The offset wells were reviewed to identify the issues from drilling a challenging trajectory through troublesome reactive formations that showed serious wellbore stability issues and stuck pipe incidents. The customized drilling and completions fluids system was designed for different intervals, taking the following objectives in consideration: 1.Improved hole stability through stressed and reactive formations 2.Enhanced hole-cleaning efficiency at critical angles 3.Minimized risk of stuck pipe across depleted formations with high porosity and permeability 4.Minimized / no induced losses to formation by utilizing unique wellbore-strengthening technique 5.Minimal damage to reservoir section during drilling phase 6.Near-wellbore damage remediation during completion phase This paper describes the customized drilling and completions fluids performance as compared to offset wells. A comprehensive engineered approach addressed the challenges of drilling horizontal wells by using a revolutionary bridging technology to strengthen the wellbore and improve wellbore stability to reduce non-productive time (NPT) related to losses, stuck pipe, etc. This paper also describes the completions fluids design to minimize reservoir damage and utilize Mesophase technology to remediate near-wellbore damage and improve reservoir producibility. The lessons learned on these wells were incorporated in drilling subsequent wells to continue improve on performance.
机译:本文介绍了钻井和完井流体设计,用于北科威特领域钻长横向/水平井及其在井RA-AAA,RA-BBB,RA-CCC和RA-DDD上的现场应用。审查偏移井通过麻烦的反应性形成来审查钻探挑战性轨迹的问题,这些反应性形成显示严重井筒稳定性问题和卡管事故。定制的钻孔和完成流体系统是针对不同的间隔设计的,考虑以下目的:1。通过应力和反应性形成的预测孔稳定性2.在临界角度下的透明空穴清洁效率3.耗尽耗尽的模板的斑块风险具有高孔隙率和渗透性4.通过利用独特的井筒增强技术,氨化/无诱导的损失在钻井阶段期间对储层部分的损坏进行了一部分损坏。在完成阶段期间井眼损伤修复本文描述了定制的钻孔和完成流体与偏移井相比的性能。通过使用革命性的桥接技术来加强井筒,提高井筒稳定性,解决了钻井水平井的挑战,以减少与损失,卡住管道等的非生产时间(NPT)减少非生产时间(NPT)。本文还描述了完整的液体设计以最大限度地减少水库损伤,利用中间相技术来修复近井眼损伤,提高水库生产性。在这些井上了解的经验教训是在钻孔之后的井中纳入,以继续改善性能。

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