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Enhanced Horizontal Well Drilling in North Kuwait Boosts Drilling Phase and Achieves Wellbore Cleaning Goals

机译:北科威特增强横向钻井钻井钻井阶段,实现了井筒的清洁目标

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Promotion of horizontal well drilling started with inflow control device (ICD) completion to boost the hydrocarbon production as per the KOC 2030 strategy. Drilling these wells revealed many technical issues leading to stuck pipe due to improper hole cleaning. The rate of penetration (ROP) in the buildup and lateral sections was erratic. Drilling a pilot hole and performing pipe-conveyed logging runs were the main factors contributing to excess rig time. It was observed that drain hole cleaning methods and drilling time optimization needed to be improved. These factors increased rig time by about 40 while drilling many horizontal wells in the North Kuwait (NK) horizontal operation, adding significant costs to the well budget. While drilling these horizontal wells, well design was optimized and the drilling team applied the optimized design that increased hole-cleaning effectively, improved ROP and reduced the logging time. The 6?-in. and 8?-in. motorized rotary steerable systems (RSS) and bottomhole assembly (BHA) systems ran for the first time in Kuwait, drilling 8?-in. build section from Mutriba to the Upper Burgan top formation and 6?-in. section in Mauddud carbonates has dynamically avoided downhole tool failures, doubled the average ROP, and reduced non-productive time (NPT). The pilot hole section was designed and drilled in two phases. In the first section a gamma ray tool identified the formation tops. The second section (zone of formation interest) was then drilled using an 8?-in. tool with a triple-combo RSS BHA. This approach reduced the extensive wireline or tough logging condition (TLC) runs and increased ROP by slimming down the borehole size. The hole-cleaning method was modified by combining pumpout techniques with heavy-weighted pills (MW+2 ppg). This technique was used in horizontal wells, resulting in reduced drilling time and well cost.
机译:促进横向钻井的钻孔开始使用流入控制装置(ICD)完成,按照KOC 2030策略提高碳氢化合物产量。钻井这些井揭示了由于孔清洁不当而导致粘连管道的许多技术问题。累积和横向部分中的渗透率(ROP)是不稳定的。钻孔飞行孔并执行管道传送的测井运行是有助于过量钻机时间的主要因素。观察到漏极清洁方法和钻井时间优化需要得到改善。这些因素在北科威特(NK)水平操作中钻出许多水平井的同时增加了约40次的钻机时间,为井预算增加了大量成本。钻井这些水平井时,优化了井设计,钻孔团队应用了有效,改善了ROP并降低了伐木时间的优化设计。 6?-in。和8?-in。电动旋转转向系统(RSS)和底座组件(BHA)系统在科威特第一次耗尽,钻8?-IN。从Mutriba建立部分到上部Burgan顶部形成和6?-in。 Mauddud碳酸盐的剖面动态避免了井下工具故障,平均ROP加倍,并减少了非生产时间(NPT)。试验孔部分以两相设计和钻孔。在第一节中,伽马射线工具识别形成顶部。然后使用8?-IN钻出第二部分(形成兴趣区)。工具与三个组合RSS BHA。这种方法减少了广泛的有线或艰难的测井条件(TLC),通过减少钻孔尺寸来延伸和增加ROP。通过将泵顿技术与重加权药丸(MW + 2 PPG)组合来改变空穴清洁方法。该技术用于水平孔,导致钻井时间降低和成本。

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