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- W2033314911 abstract "Abstract Integrated Drilling, Geosteering & Fluid Engineering Practices in order to maintain horizontal wellbore stability & maximize reservoir contact in a Channel Sand Reservoir. The target sand belongs to a transgressive facies and is characterised by channel levee system. Distribution of facies varies with the migration of channel system, making it a real challenge to place a horizontal well bore along particular target sand. While placing the lateral, structural dip and distribution pattern of channel were considered to optimize the inclination of horizontal as well as its azimuth for maximizing the contact area along the target sand. This paper discusses the use of appropriate drilling, geosteering & fluid technology & engineering practices in order to deliver stable horizontal well bores and maximize reservoir contact so as to improve production & recovery in this depositional environment. From a drilling perspective, use of rotary steerable tools with the non rotating sleeves and a compatible bit provides minimal damage to the formation. Steering is almost totally independent of stick-slip dynamics because the ribs do not rotate. The short length & retractability of this non rotating sleeve reduces differential sticking and hanging risk. The result is a highest quality borehole, virtually free of ledges, undulations and micro-tortuosity. For geosteering, in addition to the conventional triple combo logging suite, use of azimuthal resistivity with signal strength, direction and distance to bed capability enable proactive geosteering in order to predict and avoid approaching reservoir boundaries. Realtime density imaging helped to further fine tune the wellbore positioning in the sweet spot of the reservoir and also for stratigraphic position determination through correlation & dip picking. The mud system was engineered to strengthen the wellbore and improve its stability using revolutionary bridging technology while drilling. Subsequently to remediate near well bore damage & improve producibility, Mesophase technology was incorporated. The result of this integrated drilling, geosteering & mud engineering approach was successful delivery of clean, stable horizontal wellbores. Since the wellbores was placed optimally in the higher regimes of the reservoir and completed using ICDs, better ultimate recovery can be expected." @default.
- W2033314911 created "2016-06-24" @default.
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- W2033314911 date "2013-03-10" @default.
- W2033314911 modified "2023-09-26" @default.
- W2033314911 title "Integrated Drilling, Geosteering & Fluid Engineering Practices in Order to Maintain Horizontal Wellbore Stability & Maximize Reservoir Contact in a Channel Sand Reservoir" @default.
- W2033314911 doi "https://doi.org/10.2118/164408-ms" @default.
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