首页> 外文会议>IADC/SPE Managed Pressure Drilling Underbalanced Operations Conference >Overcoming a 0.35 ppg Mud Weight Window - A Case History of Successful Automated Managed Pressure Drilling and Managed Pressure Cementing Offshore Malaysia
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Overcoming a 0.35 ppg Mud Weight Window - A Case History of Successful Automated Managed Pressure Drilling and Managed Pressure Cementing Offshore Malaysia

机译:克服0.35 PPG泥浆窗口 - 以自动化托管钻井钻井钻井救济核心静电静脉静电

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TA is an over-pressurized well in the field development project located Offshore Peninsular Malaysia. Although the well was drilled as a development well, it also had an exploration objective as it was the first to penetrate the over pressured zones across a fault in the TA field. An initial attempt to drill conventionally resulted in severe gain and loss scenarios across the first of three sands 80 m below the 7” casing shoe, primarily due to weak coal formations. After many attempts to control losses, it was decided to plug- abandon the 6” open hole and to temporarily suspend the well due to insufficient operating window to drill ahead. After a year of suspension, a new drilling approach using a statically underbalanced mud weight (MW) in combination with an Automated Managed Pressure Drilling (MPD) system was introduced as the best solution for drilling into the well objectives. During the planning stage, different scenarios were analyzed based on the formation fracture gradient (FG) and pore pressure (PP) estimations. MPD plans were designed based on statically underbalanced mud while drilling, running the liner, and during the cementing job. During drilling, Dynamic Flow Checks (DFC) and Dynamic Formation Integrity Tests (DFIT) were performed using the MPD system to identify and confirm operating window. The target total depth was successfully reached with mud weighted within the narrow 0.35 ppg drilling window (17.8 - 18.1 ppg). Decision was then made to top kill the well at 1200 m-MDDF with 18.30 ppg mud, providing an overbalanced condition of 85 psi. Open hole logging operations were then successfully executed. The well was then displaced to a 16.30 ppg mud prior to performing Managed Pressure Cementing (MPC). This technical paper aims to discuss all of the MPD - MPC challenges faced and best practices developed during both the planning and execution stages of the program.
机译:TA是野外开发项目的过压良好,位于海上半岛马来西亚。虽然井被钻为发展良好,但它也有一个探索目标,因为它是第一个渗透在TA场中的故障中的过度压力的区域。钻探常规的初步尝试导致在7“套管鞋下方的三个砂体中的第一个砂砂中的严重增益和损失场景,主要原因是由于薄弱的煤层。在许多尝试控制损失之后,决定插上6“开孔,并由于操作窗口不足而暂时暂停井以便前进。在一年的悬架之后,将使用静脉凹陷的泥浆重量(MW)与自动化管理压力钻井(MPD)系统结合使用的新钻孔方法作为钻入井底的最佳解决方案。在规划阶段,基于地层裂缝梯度(FG)和孔隙压力(PP)估计来分析不同的情景。 MPD计划是基于静态底层坍塌的泥浆设计的,同时钻井,运行衬里,在巩固工作期间。在钻井期间,使用MPD系统执行动态流量检查(DFC)和动态形成完整性测试(DFIT)以识别和确认操作窗口。目标总深度以窄的0.35ppg钻孔窗口(17.8-18.1ppg)内的泥浆成功达到泥浆。然后将决定用18.30ppg泥浆处以1200 m-mddf杀死井,提供85 psi的过分均衡条件。然后成功执行开放孔记录操作。然后在进行托管压力粘合(MPC)之前将孔移位至16.30ppg泥浆。本文旨在讨论计划和执行阶段在计划的规划和执行阶段开发的所有MPD-MPC挑战。

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