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An Integrated Life-Time Artificial Lift Selection Approach for Tight/Shale Oil Production

机译:用于紧密/页岩油生产的综合寿命人工升力选择方法

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The application of horizontal drilling coupled with hydraulic fracturing technology has enabled tight oil economic production from tight oil reservoirs(well known as“shale play”).In North America,tight oil production has emerged as a reliable crude oil source.The contribution from tight oil resources is expected to grow further and could share a significant amount of future energy demand.However,the challenge is to produce difficult reservoirs economically,and key enablers are identification of“sweet spots”and well placement optimization,improving drilling efficiency,optimizing stimulation treatment and decline rates/OPEX reduction. The main challenge for long economical production is high decline rate–normally production rates could drop to 70 percent of initial rates after the first year.There are basically three reasons of such reservoir behavior:transient inflow effect,no pressure maintained and fractures deterioration.Handling of high variety of production rates with high efficiency is a significant challenge to artificial lift technique. This paper presents an integrated life-time artificial lift selection approach to optimize bottom-hole pressure and production lifting efficiency and therefore minimize production OPEX.The methodology incorporates integrated fit-for-purpose modelling approach,with taking into account the most important factors like transient reservoir behavior,lifting efficiency,equipment reliability and economics.The procedure is based on production optimization by determination of artificial lift method change necessity over well life and optimal switching point finding.The main criterion for the technique selection is a generation of maximization of value(like NPV)with minimal risks over well-life within given production constrains.
机译:水平钻孔加上液压压裂技术的应用使得从狭小的石油储层(众所周知的“页岩播放”)的紧密石油经济生产。在北美,紧密石油产量已成为可靠的原油源。紧张的贡献预计石油资源将进一步增长,并且可以分享大量的未来能源需求。但是,挑战是经济地生产困难的水库,关键的推动者是鉴定“甜点”,井边的井展优化,促进刺激优化,优化刺激治疗和下降率/ OPEX减少。长期衰退的主要挑战是跌幅高率 - 通常生产税率可能降至第一年后的初始率的70%。基本上是这种水库行为的三种原因:瞬态流入效果,没有压力维持和骨折恶化。handling高效率的各种生产率是对人工升力技术的重大挑战。本文介绍了一种综合的生命时间人工升力选择方法,可以优化底部孔压力和生产提升效率,从而最大限度地减少生产OPEX。该方法采用了集成的适合型号建模方法,同时考虑到瞬态等最重要的因素储层行为,提升效率,设备可靠性和经济学。该程序基于生产优化通过确定人工升力方法改变井生命和最佳切换点发现的必要性。技术选择的主要标准是最大化的最大化的主要标准(像NPV)在给定生产中的良好生活中具有最小的风险。

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