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Applying Horizontal Wells to Develop Oilfields with Complex Low Relief Structure in High Water Cut Stage in Tarapoa

机译:在塔拉哈瓦高水切口阶段施加水平井以开发油田,在塔拉奥纳的高水位削减阶段

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The feasibility of horizontal well technology is analyzed for the Ml reservoir of the Tarapoa Block. Applying advanced location deployment technologies of horizontal well, and optimizing key parameters are aimed to expand the application scale of horizontal wells in the Tarapoa Block. The approach is based on the research of genetic model of lithologic reservoirs, reservoir distribution characteristics and remaining oil distribution. The successful application of using combined drilling and completion technologies is already confirmed, and methods are described which focus on key parameters for optimizing horizontal well drilling and completion technology. From 2006 to 2014, nearly 67 wells have been successfully put on production on Tarapoa Block. According to petrogenesis, remaining oil of micro-structural type and well pattern imperfect type in Ml sandstone are major potential areas of applying horizontal technology. Because most wells are in a high water cut phase with thin net pays and bottom water drive, the optimal horizontal segment position, horizontal section length and well flow regime, need to be studied in order to ensure its economic benefit. Studies suggest that the relative height of the horizontal section to avoid bottom water should be more than 70%. Due to the small size of the remaining microstruetures for the Ml reservoir, the longer the horizontal section, the greater the difficulty for controlling the trajectory. Considering that the produced water needs to be treated, the initial fluid volume of the horizontal wells should be controlled. Horizontal well technology in the Tarapoa Block has been successfully applied. Horizontal wells have accounted for 44% of the production of all new wells during the period and production from horizontal wells is 2.75 times that of the directional wells. They play a key role in stabilizing oil production, slowing declines and maintaining water control.
机译:分析了Tarapoa块的ML储存器的水平井技术的可行性。应用水平井的高级定位部署技术,以及优化关键参数旨在扩展Tarapoa块中水平孔的应用量表。该方法是基于岩性储层遗传模型的研究,储层分布特征及剩余油分布。已经确认了使用组合钻井和完井技术的成功应用,并描述了对优化水平井钻井和完成技术的关键参数的方法。从2006年到2014年,近67个井已经成功地在Tarapoa Block上生产了生产。根据纤维化,ML砂岩中的微观结构型和井图案不完全型的剩余油是应用水平技术的主要潜在区域。由于大多数井在具有薄净支付和底部水驱动的高水平阶段,因此需要研究最佳水平段位置,水平段长度和流量方案,以确保其经济效益。研究表明,避免底水的水平部分的相对高度应超过70%。由于ML储存器的剩余微电池的尺寸小,水平部分越长,控制轨迹的难度越大。考虑到所生产的水需要处理,应控制水平孔的初始流体体积。塔拉波亚块中的水平井技术已成功应用。横向井已经占所有新井生产的44%,并且从水平井的生产是定向井的2.75倍。他们在稳定石油生产方面发挥着关键作用,减缓了下降和维持水控制。

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