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Successfully Drilling Sidetrack # 7 With MPD/UBD Combination After Six Failed Conventional Drilling Attempts

机译:在六次失败后,通过MPD / UBD组合成功钻孔#7

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Conventional drilling methods initially utilized to drill an east Texas HPHT well, presented in this case history, ultimately failed after six attempts were made by an independent operator to drill a “straightforward” horizontal wellbore. The subject HPHT well proved extremely challenging with reservoir BHT of 334°F and approximate 13,900 - 14,500 psi reservoir pressure. The well was plagued by several drilling problems including multiple well-control incidents, a casing failure, surge- swab issues, stuck pipe incidents, trip problems, directional control issues, and finally a blowout. Utilizing a combination of MPD and UBO techniques, Sidetrack Number 7 successfully met all project and geologic objectives. A Wide variation of pore pressure and fracture pressure equivalent mud densities made accomplishing a primary goal of MPD, (“to precisely control the annular pressure profile throughout the wellbore”) difficult but possible, requiring the combination of methods. Neither MPD nor UBO could be consistently utilized while drilling. When precise wellbore pressure management proved difficult due to the pressure regime variations, modification of the MPD technique and application of UBO accompanied by reconfiguration of the BOPE ultimately facilitated optimum control during several subsequent incidents. Key elements to success were: a) proper understanding of the physics supporting each variation of MPD and UBO used, b) thorough engineering of all problems and preparation of multiple contingency procedures, c) extensive training of all personnel related to drilling and completing the well, including rig crews, engineers, managers, vendors and support crews, and d) involvement of a highly experienced MPD/UBO team.
机译:常规钻探方法最初用于钻取东德克萨斯HPHT井,在这种情况下展示了历史,最终失败后由独立运营商进行六次尝试,以钻到“简单的”水平井筒。主题HPHT很好地证明了334°F的储层BHT和近似13,900-14,500psi储层压力。井在包括多种良好控制事件,套管故障,浪涌问题,卡车事故,旅行问题,定向控制问题,最终井喷的问题中困扰。利用MPD和UBO技术的组合,Sidetrack号7成功地满足了所有项目和地质目标。孔隙压力和断裂压力等效泥浆密度的各种变化,实现了MPD的主要目标,(“精确地控制整个井筒的环形压力曲线”)难以实现,但可能是一种方法。在钻井时可以始终使用MPD和UBO。当精确的井筒压力管理由于压力调节变化而难以困难时,MPD技术的修改和UBO的应用伴随着卷重的重新配置最终在几个后续事件中促进了最佳控制。成功的关键要素是:a)正确理解物理支持MPD和UBO的每个变化,b)彻底工程的所有问题和编写多次应急程序,c)广泛培训所有与钻井相关的人员培训和完成井的所有人员培训包括钻机船员,工程师,经理,供应商和支持人员,以及D)参与高度经验丰富的MPD / UBO队伍。

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