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Utilizing a Fully Automated MPD System to Run and Cement 9-5/8 in. Liner String in HPHT Gas Wells

机译:利用全自动MPD系统运行和水泥9-5 / 8。HPHT气井中的衬垫弦

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The field of interest involves penetrating a predominantly dolomite and dolomitic limestone formation associated with highly pressurized saltwater equivalent to as high as 157 pcf (21 ppg). The most over- pressurized zones are encountered across the ±1,000 ft. base layer of this formation where the majority of flow incidents occurs. This is further exacerbated by the extremely narrow mud window of 0.5-1.0 pcf (0.07-0.14 ppg) between the pore pressure and fracture pressure. Such conditions may lead to risky operations that include well control, high mud weight (MW) design complications, differential sticking, drillstring design limitations, liner equipment failure, poor cement job, etc. Fully automated managed pressure drilling (MPD) systems are utilized to drill the 12 in. hole section and walk the tight window across this rock. This approach allows for applying surface back-pressure (SBP) and accurately holding constant bottomhole pressure (BHP) while keeping constant MW throughout the drilling operation. This operation also witnessed the application and utilization of fully automated MPD systems as means to run and cement a 9-5/8 in. liner across this troublesome zone. Conventionally running liners in excessively high kill MW of ±155 pcf (20.72 ppg) while dealing with tight margins is particularly challenging as it yields total losses due to the surge effect. Conventional cement jobs also mandate filling the hole with high kill MW before the cementing operation, inducing losses and resulting in poor well integrity, leaking liner packer, wet casing shoe, etc. Utilizing MPD systems to run and cement the 9-5/8 in. liner allowed for multistage hole displacement, filling the hole with a lighter MW, and maintaining constant BHP throughout the entire operation regardless of any surface tool failure (pump cavitation, leaking cement head, and surface lines, etc.). This paper details the planning and design phase along with the operational sequence of running and cementing the 9-5/8 in. liner with fully automated MPD systems. A case study will be highlighted to establish lessons learned and best practices.
机译:感兴趣领域涉及穿透主要的白云石和白云岩石灰石形成,与高度加压的盐水相当于高达157pCF(21ppg)。最常见的区域遇到±1,000英尺。这种形成的大部分流动事件发生的基础层。这在孔隙压力和断裂压力之间的0.5-1.0pCF(0.07-0.14ppg)的极窄的泥浆窗口进一步加剧。这些条件可能导致风险的操作,包括良好控制,高泥浆重量(MW)设计并发症,差动粘附,钻头设计限制,衬里设备故障,较差的水泥作业等。完全自动化托管压力钻孔(MPD)系统用于钻12英寸。孔部分并走上这岩石的紧身窗。该方法允许施加表面背压(SBP)和精确地保持恒定的底孔压(BHP),同时保持整个钻孔操作的恒定MW。该操作还目睹了全自动MPD系统的应用和利用,作为运行和水泥的手段,在此故障组织中划过的衬垫。传统上运行的衬垫在过高的±155 pcf(20.72ppg)的同时,处理紧张的边缘尤其具有挑战性,因为它产生由于喘振效应产生的总损失。传统的水泥作业还授权在固井操作之前用高杀麦片填充孔,诱导损耗,导致良好的完整性,漏水填充器,湿套管等利用MPD系统运行和水泥的速度较差,衬里封闭鞋等9-5 / 8 。衬里允许多级孔位移,用较轻的MW填充孔,并在整个操作中保持恒定的BHP,无论任何表面刀具故障如何(泵空化,泄漏的水泥头和地表线等)。本文详细介绍了规划和设计阶段以及运行和巩固9-5 / 8的操作顺序。衬里与全自动MPD系统。将突出案例研究以建立经验教训和最佳实践。

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