首页> 外文会议>SPE/IATMI Asia Pacific Oil Gas Conference and Exhibition >Breaking Records Using an Innovative Organophilic Clay-Free Invert Emulsion Fluid OCF-IEF to Drill the Longest Well to Date in the United Arab Emirates 35,800 ft
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Breaking Records Using an Innovative Organophilic Clay-Free Invert Emulsion Fluid OCF-IEF to Drill the Longest Well to Date in the United Arab Emirates 35,800 ft

机译:使用创新的有机粘土倒反转乳液液体OCF-IEF打破记录,在阿拉伯联合酋长国35,800英尺的阿拉伯联合酋长国钻井迄今为止

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This paper discusses the successful design, laboratory testing, and performance of an innovative, low solids, organophilic clay-free invert emulsion fluid (OCF-IEF) used to drill the reservoir section of an extended reach drilling (ERD) well. This specially designed drill-in fluid helped maintain the key ERD factors within the specifications necessary and set new limits for drilling performance, thus maximizing the horizontal section displacement/reservoir drainage and production output. ERD wells necessitate extensive design, planning, and close monitoring of various parameters to successfully complete the drilling and completion phases and deliver production expectations. While evaluating the feasibility of drilling the longest well in the UAE, establishing appropriate fluid system properties was a key focus area. The rheology profile was optimized for hydraulic management, hole cleaning, and fluid stability. The ground marble bridging package was designed to be minimally damaging. Lubricity and rate of penetration (ROP) maximization was also addressed by designing a low solids OCF-IEF in which the base brine was calcium bromide (CaBr2). This paper discusses the processes used during the planning phase, including laboratory testing and hydraulic simulations, and the procedures followed during the execution phase, which helped ensure trouble-free performance during drilling operations. Proper planning and execution using the best-available drilling practices helped enable the drilling of this record-breaking well, without significant issues that could impact rig time. The selection of an OCF-IEF to provide low equivalent circulating density (ECD) performance in a fragile gel fluid, with low sag risk, was fundamental to achieve the necessary fluid properties. The low solids design helped improve deployment of the weighting material (ground marble) compared to similar fields in which more conventional organophilic clay-based fluids were used. More than 18,000 ft were drilled in nine days with an average ROP of 2,000 ft/D, which set a record ROP in this field. As a result, the drilling operations were completed ahead of schedule and below the authorized financial expenditure (AFE). Additionally, the production rate was five times greater than estimated, thus confirming the anticipated nondamaging property of this OCF-IEF. The OCF-IEF design and performance brought within reach reserves not easily accessible using conventional mud systems and drilling techniques. The increased reservoir drainage resulted in significant productivity gains. This fluid can also be used during other operations to reach new target depths to maximize production.
机译:本文讨论了成功的设计,实验室测试,和用于钻井的延伸钻井(ERD)井的储层段一种创新的,低固含量,亲有机物质的无粘土-逆乳液流体(OCF-IEF)的性能。这款专门设计的钻孔流体有助于维护必要规格内的关键ERD因子,并为钻井性能设定新限制,从而最大化水平截面位移/储层排水和生产输出。 ERD Wells需要广泛的设计,规划和密切监控各种参数,以成功完成钻井和完成阶段,并提供生产预期。虽然评估钻孔在阿联酋的最长良好井的可行性的同时,建立适当的流体系统特性是关键焦点区域。针对水力管理,孔清洁和流体稳定性优化了流变型。地面大理石桥接包装设计造成损害。通过设计低固体OCF-IEF,还通过设计碱性盐水是溴化钙(CABR2)的低固体OCF-IEF来解决的润滑性和渗透率最大化(ROP)最大化。本文讨论了在规划阶段期间使用的过程,包括实验室测试和液压模拟,以及在执行阶段期间的程序,这有助于确保在钻井操作期间的无故障表现。使用最佳钻井实践的适当规划和执行有助于使这场记录钻井钻井,而无需影响钻机时间的重要问题。选择OCF-IEF在脆弱的凝胶流体中提供低等效循环密度(ECD)性能,具有低张力的风险,是实现必要的流体性质的基础。与使用更多常规的有机粘土基流体相比,低固体设计有助于改善加权材料(地面大理石)的展开。在九天内钻了超过18,000英尺,平均ROP为2,000英尺/ d,该历史记录在该领域。因此,钻井业务在提前完成并低于授权的财务支出(AFE)。此外,生产率比估计的5倍,从而确认了该OCF-IEF的预期Nondamaging属性。 OCF-IEF的设计和性能在REACH储备内,不易使用传统的泥浆系统和钻孔技术访问。增加的储层排水导致了显着的生产率收益。在其他操作中也可以使用该流体来达到新的目标深度以最大化生产。

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