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Variations of Managed-Pressure Drilling Currently Practiced: Offshore Case Studies

机译:当前实行的管理压力钻井的变化:海上案例研究

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Managed Pressure Drilling in marine environments is well on the path of widespread understanding and industry appreciation of potential for the technology. From years of evolutionary development on land programs, particularly in the United States and Canada, a number of offshore drilling decision-makers have now become "first adopters" of this technology with significant success and with good control of the well at all times during the drilling process. Perhaps the best way to quantify this statement is to mention that, to date, all first adopters of MPD from offshore rigs plan future MPD projects. Unlike conventional circulating drilling fluids systems that are open to atmosphere on the rig floor, MPD tools and technology enable the circulating fluids system to be likened to the hydraulic characteristics of a pressure vessel. Several variations of MPD enable the effective wellbore pressure profile (e.g., equivalent mud weight) to be adjusted significantly with mud in the hole at the time, particularly beneficial when drilling in narrow formation pore pressure to fracture pressure margins and when the pressure environment limits may be relatively unknown. One variation of MPD addresses severe loss of circulation and excessive mud costs. Another addresses employee health, safety and environmental aspects that may be associated with drilling with conventional open-to-atmosphere mud returns systems at the rig floor. A closed and pressurizable mud returns system is the enabling technology for most, but not all, applications of MPD. Drilling with a closed mud returns system reflects a relatively modest step change from conventional methods; most offshore rigs can accommodate the specialized equipment space requirements, benefits vs. cost are attractive, and the "MPD way of looking at drilling hydraulics" is relatively easy for drilling decision-makers and regulatory agencies to comprehend. Therefore, this paper will speak only to the "lower hanging fruit" MPD techniques that are enabled by drilling with a closed and pressurizable mud returns system or annulus. More precise pressure management throughout the wellbore is an objective of all variations of MPD. Unexpected downhole pressure environments may be dealt with more efficiently with enhanced control of the well and usually with less interruption to the drilling program when such surprises are encountered. An influx of formation fluids is not invited in MPD. Although some MPD tools and techniques are rooted in Underbalanced Drilling technology, this is a major distinction between MPD and UBD.
机译:在海洋环境中进行有管理的压力钻井正处于广泛的了解和业界对该技术潜力的认识的道路上。经过多年陆上项目的演变发展,特别是在美国和加拿大,许多海上钻井决策者现已成为该技术的“第一批采用者”,并取得了巨大的成功,并且在钻井过程中始终对井进行了良好的控制。钻孔过程。量化此陈述的最佳方法也许是,到目前为止,海上钻机的所有MPD最初采用者都计划未来的MPD项目。与在钻机平台上对大气开放的常规循环钻井液系统不同,MPD工具和技术使循环钻井液系统可以与压力容器的液压特性相提并论。 MPD的几种变化使有效的井眼压力曲线(例如,等效泥浆重量)随当时的井眼中的泥浆而显着调整,当在狭窄的地层孔隙压力中钻井达到压裂压力裕度以及压力环境可能限制时,这尤其有益。相对未知。 MPD的一种变体解决了严重的循环损失和过高的泥浆成本。另一个解决方案涉及员工健康,安全和环境方面的问题,这些方面可能与在钻台上使用常规的向大气层敞开的泥浆回流系统进行钻井有关。封闭且可加压的回油系统是MPD的大多数(但不是全部)应用的使能技术。与常规方法相比,采用封闭式泥浆回输系统进行钻井反映了相对适度的阶跃变化。大多数海上钻机都可以满足特殊设备的空间需求,其收益与成本之间的吸引力非常诱人,并且钻井决策者和监管机构相对容易理解“ MPD钻井液压系统”。因此,本文仅涉及“低垂果实” MPD技术,该技术可通过使用封闭且可加压的回油系统或环空钻井来实现。整个井眼中更精确的压力管理是MPD所有变化形式的目标。意外的井下压力环境可以通过加强对井的控制来更有效地处理,并且在遇到此类意外情况时通常可以减少对钻井程序的干扰。 MPD中不邀请地层流体涌入。尽管某些MPD工具和技术植根于欠平衡钻井技术,但这是MPD和UBD之间的主要区别。

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