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After 14 years of Water Flooding a Giant Reservoir in North Kuwait: Lessons Learnt, Experiences Gained and Way Forward

机译:经过14年的水水淹没北科威特的巨大水库:学习经验教训,经验已经获得,前进

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The Sabiriyah Mauddud limestone is a super-giant depletion drive oil reservoir in North Kuwait. It is undergoing massive development efforts, with a planned enhancement in oil production through phased water flood development since 2000. The Phase 1 development addresses the crestal area (60 km2) of the structure, which was the focus for development efforts in the past. 14 years of dynamic performance from producers and injectors located in the Phi area enhanced the understanding of the reservoir dynamics. Time lapsed monitoring of static reservoir pressures at key wells during the ongoing water flood, coupled with isochronal Pressure surveys during reservoir shut-downs and RFT data from newly drilled wells in the area during the post injection period, helped to confirm the pressure connectivity across the reservoir and the water flood response. As all the wells are on ESP, the live data on Pump-intake Pressures provided insights into response behavior. Production tests gave valuable insights into the well performance, specially water cut build-up and reservoir architecture. Integration of the dynamic data with Production logs & FMIs led to the identification of speed zones with high permeability. One of the limitations of the pattern water flood with a combination of vertical injectors & vertical producers perforated across the whole hydrodynamic unit was a quick water breakthrough via the high perm speed zones and re-circulation of the injected water, as evident from tracer surveys and PLT data. A comprehensive review and updated performance analysis led to the need of re-developing the reservoir with a paradigm shift using a combination of Horizontal injectors drilled & completed at bottom of the hydraulic unit and the horizontal producers drilled/ completed at upper part so that the water breakthrough is delayed and better sweep is achieved. A conformance plan has been taken up so as to switch over to the new strategy. The Phase2 development consists of all remaining peripheral acreage (250 km2), with immense reservoir rock & fluid uncertainties, leading to the identification of reservoir segments for re-appraisal through drilling & testing of new wells. Re-appraisal work, along with enhanced fluid description, led to the conclusion that a large segment within the Ph2 area, originally considered as a regime of light oil-turned out to be viscous oil with a high pressure ramp. In addition to helping the ongoing Full field dynamic modeling and development planning for this giant reservoir, this also led to the initiation of a peripheral Water flood with vertical wells initially, and switching over to Non-Conventional Wells in the poorer Ph2 area.
机译:Sabiriyah Mauddud石灰石是北科威特的超巨型消耗驱动器油藏。它正在进行大规模的开发努力,自2000年以来通过相平水洪水开发计划提高石油产量。第1阶段开发解决了该结构的壁龛区(60公里),这是过去开发工作的重点。 14年,位于PHI地区的生产商和注射器的动态性能增强了对储层动态的理解。在持续的水洪水中,关键井的静态储层压力的时间流逝监测,与在注射后的新钻井间的储层关闭和来自新钻井井的RFT数据期间的同步压力调查,有助于确认压力连接水库和水洪反应。由于所有井都在ESP上,泵送压力的实时数据提供了响应行为的见解。生产测试对井的性能有着宝贵的见解,特别是水切割和水库建筑。使用生产日志和FMI的动态数据集成导致具有高渗透率的速度区域。具有垂直喷射器和垂直生产者组合的模式水泛的局限性之一,穿过整个流体动力学单元,通过高烫发速度区和注射水重新循环,从示踪剂调查和垂直PLT数据。全面的审查和更新的性能分析导致了需要在液压单元底部的水平注射器和完成的水平注射器的组合和在上部钻孔/完成的水平生产商之间使用水平注射器的组合重新开发水库。突破延迟,达到更好的扫描。一致计划已被占用,以转换为新策略。相2的开发包括所有剩余的外围面积(250平方公里),具有巨大的储层岩石和流体的不确定性,导致通过钻探和测试新井来重新评估水库段。重新评估工作以及增强的流体描述,结果是PH2区域内的一个大段,最初被认为是轻油的制度,原来是具有高压斜坡的粘性油。除了帮助这种巨大储层的持续全场动态建模和开发规划外,这也导致了最初与垂直井的外周性水泛洪水发起,并在较差的PH2区域切换到非常规井。

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