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Integration of Dynamic Modeling of ICD Completion Design and Well Placement Technology: A Case Study of GOM Shelf Reservoir

机译:ICD完成设计和井放置技术动态建模的集成 - 以金属架储层为例

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High water production is a major issue in horizontal oil wells, especially in longer laterals, because of the high drawdown from the heel to toe. In addition, the presence of heterogeneity along the lateral section can lead to uneven sweep of hydrocarbons which can result in poor recovery. To control the water production and achieve better sweep efficiency, ICDs have been introduced which balance fluid flux along the producing horizontal well. This paper discusses the feasibility and results of using integrated technologies such as ICDs along with rotary steerable drilling systems (RSS) and azimuthal logging while drilling well placement technology to achieve higher reservoir sweep efficiency. This case study is focused on a Gulf of Mexico (GoM) shelf horizontal well which was completed with prepacked screens. The well was sanded in and plugged after five years of high water production. A saturation log was run in the offset well which granted the viability to revisit this reservoir. Consequently, a new offset horizontal well was proposed and drilled next to the existing well to sweep out remaining reserves. For the new offset well, full field dynamic simulations were performed to evaluate attic placement methodology and optimization of Inflow Control Devices (ICDs) into the integrated design. The results illustrate that attic horizontal well placement is feasible using integrated drilling with ICD technology to maximize the sweep efficiency.
机译:高水位产量是水平油井的主要问题,特别是在较长的侧面,因为高跟鞋到脚趾的高度缩减。另外,沿着横向截面的异质性存在可能导致烃的溶液不均匀,这可能导致差的恢复。为了控制水生产并实现更好的扫描效率,已引入ICDS沿生产水平井平衡流体通量。本文讨论了使用ICD等综合技术以及旋转转向钻井系统(RSS)和方位记录的可行性和结果,同时钻井井放置技术,实现更高的储层扫描效率。本案例研究专注于墨西哥湾(GOM)水平井,其与预先包装的屏幕完成。经过五年的高水平生产,井在砂磨并堵塞。在偏移井中运行饱和度日志,该偏移量授予可行性以重新审视该水库。因此,提出了一种新的偏移水平井,并在现有的井旁边钻井,以扫除剩余的储备。对于新的偏移井,进行全场动态模拟,以评估流入控制装置(ICD)的阁楼放置方法和优化进入集成设计。结果说明了阁楼水平井放置使用ICD技术的集成钻井可行,以最大化扫描效率。

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