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Achieve Demanding Targets: Successful Well Placement With No Harm to the Environment. Case Study from Offshore Abu Dhabi

机译:实现苛刻的目标:成功的井安置对环境没有伤害。近海阿布扎比的案例研究

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Drilling and producing oil wells safely and with minimum risk of environmental hazards is crucial in Abu Dhabi offshore fields. A significant challenge to achieve this goal is steering in very selective sub-layers without conventional radioactive source porosity tools. Acquiring real-time data is critical, especially when drilling slim holes with long horizontal drains, and a well profile that targets several thin reservoir beds. To meet this challenge, a nuclear magnetic resonance (NMR) sourceless porosity tool was introduced for the first time in this reservoir in a six-inch hole. Two lateral drains, each more than 3,000 ft., were drilled, targeting different reservoirs. As a part of the geosteering methodology, nearby offset well properties were incorporated to generate a forward model along the planned well trajectory. The forward integrated geosteering model was updated in real time with porosity and gamma ray data, resistivity images and, structure views, etc. Decisions were made from this input to place the trajectory in the optimum target zones, achieving the reservoir objectives. This paper demonstrates the successful use of an NMR sourceless tool's real-time data acquisition that played a significant part in facilitating effective geosteering and well placement. Real-time NMR total porosity was critical to confirm optimum well placement, especially where lateral facies variations were expected and due to the limited availability data for such a green field. In addition, the available porosity distribution was used to estimate a permeability index. This index, after normalization to offset the well data, was used for selecting formation pressure while drilling and reservoir zonation. The case study in this paper shows that with current advance technologies, incorporated data for available wells, and real-time technical support, the demands of sourceless drilling can be achieved to place the well in a precise target during slim borehole drilling.
机译:安全和生产油井安全,并具有最小的环境危害风险在阿布扎比海上野外至关重要。实现这一目标的重大挑战是在没有传统放射源孔隙率工具的情况下在非常选择的子层中转向。获取实时数据至关重要,特别是在钻孔长水平漏斗的纤细孔时,以及针对几张薄储层床的井轮廓。为了满足这一挑战,在六英寸孔中首次引入核磁共振(NMR)源孔隙率工具。两个横向排水管,每个横向排水管,每个超过3,000英尺。,钻探,瞄准不同的储层。作为地升性方法的一部分,结合了附近的偏移井属性以沿着计划井轨迹产生前向模型。前向集成的地升设备模型以孔隙度和伽马射线数据,电阻率图像和,结构视图等实时更新。从该输入进行决定,将轨迹放置在最佳目标区域中,实现储层目标。本文展示了NMR源工具的实时数据采集的成功使用,这在促进有效的地统计和井井井中发挥了重要作用。实时NMR总孔隙度对于确认最佳井放置至关重要,特别是在预期侧面变化并且由于这种绿地的可用性数据有限。此外,可用的孔隙率分布用于估计渗透性指数。该指数在归一化以抵消井数据之后,用于在钻井和储层区分时选择形成压力。本文的案例研究表明,利用当前的先进技术,掺入可用井的数据以及实时技术支持,可以实现源钻井的需求,以便在纤细的钻孔钻井期间在精确的目标中放置井。

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