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Drilling through Abnormally High- and Low-Pressured Compartments in the Bolontiku Offshore Field

机译:通过在Bolontiku离岸领域的异常高压和低压隔间钻孔

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The Bolontiku field is located offshore on the continental shelf of the Gulf of Mexico, adjacent to the coast of Tabasco state. This field is composed of dolomitized carbonates of the Upper Jurassic Kimmeridgian formations, which yields 39° API hydrocarbons. Exploitation has dropped the bottomhole pressures from 8,159 psi to 5,600 psi and has created an average operating drilling window of 0.07 g/cm3. Such a narrow operating window increases the technical difficulty for continued development in this mature field using conventional drilling techniques. The complexity of effectively controlling the wellbore pressure has resulted in an endless cycle of fluid loss to formation, kicks, and well control events that translate into non-productive time (NPT), which increased operating time and costs, potentially leading to well abandonment. A managed pressure drilling (MPD) technique allows for effective control of the pressure profile throughout the wellbore, identifying the bottomhole pressure (BHP) limits and applying appropriate backpressure accordingly. Owing to its efficiency, this technique has evolved from an innovative technology to become a required application to mitigate the inherent wellbore pressure problems associated with conventional drilling. Therefore, as MPD evolves, different approaches for well control evolve for kick events. This paper describes a well-control application simultaneous to the drilling operation using MPD with a closed-loop pressurized control system. This paper reviews a case history of two wells that were drilled with MPD and compares results against three wells that were conventionally drilled in the Bolontiku field. MPD and simultaneous well control allowed for drilling the Bolontiku 37 well, which consisted of compartmentalized pressure that historically lead to fluid losses and water influxes. Therefore, it was possible to drill through zones that before were not technically possible.
机译:Bolontiku领域位于墨西哥湾的大陆架上,毗邻Tabasco国家的海岸。该领域由上侏罗克基汞的碳酸碳酸盐组成,其产生39°API烃。开发已经将底孔压力从8,159 psi跌至5,600 psi,并创建了0.07g / cm3的平均工作钻孔窗口。这种狭窄的操作窗口利用传统的钻井技术增加了这种成熟场继续开发的技术难度。有效控制井筒压力的复杂性导致了形成,踢的流体损失的无限循环,并良好的控制事件转化为非生产时间(NPT),这增加了操作时间和成本,可能导致良好的放弃。受管压钻(MPD)技术允许有效地控制整个井筒的压力曲线,识别底孔压力(BHP)限制并相应地施加适当的背压。由于其效率,该技术已经从创新技术演变,成为所需的应用,以减轻与传统钻井相关的固有井眼压力问题。因此,随着MPD的发展,井控制的不同方法也会发展踢球事件。本文使用MPD具有闭环加压控制系统,同时对钻井操作同时介绍一个良好的控制应用。本文审查了两个井的案例历史,这些井被MPD钻了,并将结果与​​在Bolontiku领域传统上钻孔的三个井进行了比较。 MPD和同时控制允许钻孔Bolontiku 37井,这包括历史上导致流体损失和水涌入的舱室化压力。因此,可以通过之前在技术上不可能钻取。

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