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首页> 外文期刊>SPE journal >New Completion Methodology To Improve Oil Recovery and Minimize Water Intrusion in Reservoirs Subject to Water Injection
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New Completion Methodology To Improve Oil Recovery and Minimize Water Intrusion in Reservoirs Subject to Water Injection

机译:新的完井方法将改善注水油藏中的油采收率并最大程度地减少水的侵入

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摘要

Implementing water injection during the early stage of a new reservoir's development is a process that is gaining popularity around the world. This is especially true in Saudi Arabia, where water injection is used both to improve oil recovery and to maintain pressure by placing short or long horizontal water-injection wells around the reservoir flanks.For cases where water-injection wells are placed in reservoir flanks, some of the producing wells are perforated transverse to the water-injection wells to improve the oil recovery around the involved areas. For this specific exploitation strategy, there is a potential risk of water channeling from the injector to the producing well toe, which, once it happens, might jeopardize recovery efficiency.For the referenced exploitation strategy, a new completion methodology is proposed that considers the placement of a fracture barrier at the toe of the producing well to delay water intrusion and improve recovery efficiency. This paper discusses the use of nonconductive barrier fractures and the benefits of the completion methodology, supported with extensive simulations for the different scenarios.
机译:在新水库开发的早期阶段实施注水是一个在世界范围内越来越受欢迎的过程。在沙特阿拉伯尤其如此,在沙特阿拉伯,通过在储层两侧放置短或长的水平注水井,既可以改善油的采收率,又可以保持压力。对于在储层两侧放置注水井的情况,一些生产井相对于注水井横向打孔,以改善相关区域的采油率。对于这种特定的开采策略,存在水从注入器流向生产井脚趾的潜在风险,一旦发生,可能会危害采油效率。对于参考开采策略,提出了一种新的完井方法,该方法考虑了布置在生产井的脚趾处设置裂缝屏障以延迟水侵入并提高采收率。本文讨论了非导电性屏障裂缝的使用以及完井方法的优势,并针对不同情况进行了广泛的模拟。

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