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dc.contributor.authorJabbar, Saddam Abdul
dc.date.accessioned2025-08-12T04:23:57Z
dc.date.available2025-08-12T04:23:57Z
dc.date.issued2025-08-11
dc.identifier.urihttps://library.universitaspertamina.ac.id//xmlui/handle/123456789/14487
dc.description.abstractGeothermal drilling operations face unique challenges in maintaining wellbore stability and effective cuttings transportation due to high temperature formations and fracture zones. This study aims to analyze the combination of mud and gas flow rates in the reservoir zone of geothermal well SAJ-16 to determine the optimal parameters for slightly underbalanced drilling. Hydraulic simulations were performed using Beggs & Brill correlation and WellPlan software to evaluate bottom hole pressure (BHP), equivalent circulating density (ECD), and cuttings transport ratio (CTR). The results show that increasing gas flow rates reduce BHP and ECD, thus allowing unbalanced conditions but with the risk of formation collapse if the bottom hole pressure below the collapse pressure limit. Conversely, higher mud flow rates increase fluid velocity and CTR, improving cuttings transport efficiency while reducing the potential for cutting bed. Recommendation mud flow rate for 12-1/4” hole section is 600-910 gpm and gas flow rate are 150-1000 scfm. While, mud flow rate for 9-7/8” hole section is 500-787 gpm and gas flow rate are 150-3000 scfm, due to maintaining BHP between reservoir pressure and collapse pressure also achieving CTR value > 0,70. The findings provide a reference for optimizing drilling parameters in geothermal wells to minimize non-productive time and operational risks.en_US
dc.language.isoenen_US
dc.titleAnalysis of the Combination Mud and Gas Flow Rates for Hole Cleaning in Reservoir Zone of SAJ-16 Geothermal Wellen_US


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