First Application of Pressure Mud Cap Drilling Technique with Manage Pressure Drilling in Unconventional Gas Exploratory Onshore Field in UAE Allowed Operator to Reach Target Depth and Complete the Wells

F. Ruíz, M. Elzeky, Rahma Al Rahma, Abdulrahman Hasan Al Ali, Faisal Siddiqui, Y. Nunez, A. Lari, Ayman Hebish, Ashraf Ali, I. Hamdy, Ayman El Shahat, E. A. Al Shamisi, Ali Sulaiman Bin Sumaida, Ahmed Abdulla Al Mutawa, Boaventura Bau, Cesar Orta, Daniel Juarez, M. Saleh
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Abstract

This paper undertakes the application of Pressurized Mud Cap Drilling (PMCD) technique with Manage Pressure Drilling (MPD) as a new drilling approach in the Unconventional Gas Exploratory field to successfully drill through Nahr Umr & Shuaiba formations managing the risks associated with total losses due to the natural fracs and faults in the area, which if drilled conventionally instigate well control situations, large amount of drilling fluid lost into reservoir and not reaching the target depth (TD). One of the most powerful drilling techniques to apply in unconventional wells is MPD, It's used to optimize drilling operations under critical challenges, such as narrow window between pore pressure, hole instability and fracture pressure, pressure heterogeneity when drilling different formations and severe downhole losses. Study was carried out to mitigate challenges across 8-½" and 6″ holes based on previous conventional drilling experiences of simultaneous kick and loss events, MPD system was introduced to overcome that challenge. When severe losses were encountered at Nahr Umr & Shuaiba formations PMCD, an MPD technique, offered the ability to reach well TD despite the total losses using 3 different drilling fluids, Sacrificial fluid (SAC), Light Annular Mud (LAM) and Kill Mud Weight (KMW) in closed-loop drilling without mud returns while stablishing a mud cap in the annulus managing the wellhead pressure by bullheading to stop gas migration. PMCD facilitated drilling under suddenly total losses minimizing the mud consumption, reduced time/cost and avoided un-controlled release of hydrocarbons. Four wells were successfully drilled, for a total of 1,183 ft, under severe Losses where LCM treatment could not heal the natural fracked formation. PMCD converted conventional drilling into close-loop drilling system by installing Rotating Control Device (RCD) on top of the annular Blow out Preventer (BOP) establishing mud-cap in the annulus and allowing constant monitoring of the well conditions via Surface Back Pressure (SBP). A positive injectivity test was performed after total losses to confirm the formation can take drilling fluid and cuttings. Drilling started with SAC injection in the string and LAM injected intermittently in the annulus through the RCD, whenever the SBP required to be managed due to gas migration effect into the mud cap. Tripping out of hole the drilling BHA and running completions were performed in PMCD mode. This paper is the number four written (Previous: SPE-207798-MS, SPE-211775-MS & SPE-211775-MS) for the milestones achieved to develop this new area with Geo-political strategic for UAE. Apply the PMCD, helped to reduce the time of drilling & completion in the UC wells, due to the losses control, from 35 days in average to 10 days, and saving ± 50% of the budget in the target sections (8-1/2″ & 6″).
压力泥浆帽钻井技术在阿联酋陆上非常规天然气勘探油田的首次应用,使作业者达到了目标深度并完成了完井
本文将加压泥浆帽钻井技术(PMCD)与控压钻井技术(MPD)作为一种新的钻井方式在非常规天然气勘探领域的应用,成功地钻穿了Nahr Umr和Shuaiba地层,有效地管理了该地区天然裂缝和断层造成的全损风险,而这些天然裂缝和断层在常规钻井中会引发井控情况。大量钻井液漏失到储层中,未达到目标深度(TD)。非常规井中最强大的钻井技术之一是MPD,它用于优化关键挑战下的钻井作业,例如孔隙压力窗口窄、井眼不稳定和破裂压力、不同地层钻井时的压力非均质性以及严重的井下漏失。为了缓解8- 1 / 2”和6″井眼同时发生井涌和漏失的挑战,研究人员采用了MPD系统来克服这一挑战。当Nahr Umr和Shuaiba地层出现严重漏失时,采用MPD技术的PMCD在闭环钻井中使用3种不同的钻井液,即牺牲液(SAC)、轻质环空泥浆(LAM)和压井泥浆(KMW),在没有泥浆回流的情况下达到井深,同时在环空建立泥浆帽,通过压井来控制井口压力,以阻止气体运移。PMCD有助于在突然发生总损失的情况下进行钻井,最大限度地减少泥浆消耗,减少时间/成本,避免不受控制的碳氢化合物释放。在严重漏失的情况下,LCM处理无法修复天然压裂地层,成功钻出了4口井,总深度为1183英尺。PMCD通过在环空防喷器(BOP)顶部安装旋转控制装置(RCD),在环空建立泥浆帽,并通过地面回压(SBP)持续监测井况,将常规钻井转变为闭环钻井系统。在全漏失后进行了正注入性测试,以确认地层可以携带钻井液和岩屑。钻井开始时,在管柱中注入SAC,并通过RCD在环空间歇注入LAM,每当由于气体运移到泥浆帽的影响而需要控制收缩压时,就会将BHA起下钻,并在PMCD模式下进行完井。这篇论文是第四篇(前一篇:SPE-207798-MS, SPE-211775-MS和SPE-211775-MS),旨在为阿联酋开发具有地缘政治战略的新领域取得里程碑式的成就。由于防漏失,应用PMCD有助于减少UC井的钻井和完井时间,从平均35天减少到10天,并在目标段(8-1/2″和6″)节省了±50%的预算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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