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New Generation Rotary Steerable System and Pressure While Drilling Tool Extends the Benefits of Managed Pressure Drilling in the Gulf of Mexico

机译:新一代旋转可操纵系统和压力,同时钻孔工具在墨西哥湾延长了管理压力钻井的好处

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As hydrocarbon basins mature, reservoir pressure depletion caused by hydrocarbon production leads to severe pore pressure/fracture gradient anomalies that can reduce an otherwise sufficient mud weight window significantly. At the same time, reentries involving slim-hole sidetracks incur high annular losses that further widen the gap between equivalent static and circulating densities - ESD and ECD. In this situation, it is not possible to drill using normal overbalanced methods. The risk of formation fracturing and fluid losses, fluid influxes, and wellbore collapse would far outweigh the reward of increased production. The effective variation of static and circulating densities must be minimized. A major project in the Gulf of Mexico posed such a problem. Managed pressure drilling (MPD) was adopted as the solution to manage a tight hydraulic window and effectively drill reservoirs which would have been extremely challenging using conventional drilling methods. Traditional directional drilling with a positive displacement motor would normally create more pressure balance complications under a MPD environment due to the continuous fluctuations to the ECD when the motor is in sliding or steering mode. This paper outlines how new generation rotary steerable systems coupled with the interpretation from a downhole real time pressure while drilling sensor was engineered to maximize drilling performance for a directionally drilled well in MPD environment. This paper will also discuss the case histories and lessons learned and thoroughly review the range of opportunities these technologies have created in the maturing areas of the Gulf of Mexico.
机译:作为碳氢化合物盆地成熟,碳氢化合物生产引起的储层压力耗尽导致严重的孔隙压力/断裂梯度异常,可以显着减少其他足够的泥浆体重窗口。同时,涉及细长孔侧面的返回率会产生高的环形损耗,进一步扩大了等效静态和循环密度之间的差距 - ESD和ECD。在这种情况下,不可能使用正常的过分均衡方法来钻取。形成压裂和液体损失,流体涌入和井眼坍塌的风险将远远超过了增加的生产的奖励。必须最小化静态和循环密度的有效变化。墨西哥湾的一个主要项目提出了这样的问题。采用管理压力钻井(MPD)作为管理紧密液压窗口的解决方案,有效钻探水库,使用传统的钻探方法非常具有挑战性。由于当电动机滑动或转向模式时,带有正排量电机的传统定向钻孔通常会在MPD环境下产生更多压力平衡并发症,这是由于ECD的连续波动。本文概述了新一代旋转可转向系统如何与井下实时压力的解释联接,同时钻孔传感器设计成最大化钻井性能,以便在MPD环境中定向钻井井。本文还将讨论案例历史和经验教训,并彻底审查这些技术在墨西哥湾的成熟地区创造的机会范围。

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