首页> 外文会议>SPE Asia Pacific Oil and Gas Conference and Exhibition >A Field Application of Successful Installation and Sequential Activation of 15,000-psi Rated Hydro-Mechanical Multi-Stage Completion in Peripheral Deep North Kuwait Jurassic Asset for Improved Completion Efficiency and Well Productivity
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A Field Application of Successful Installation and Sequential Activation of 15,000-psi Rated Hydro-Mechanical Multi-Stage Completion in Peripheral Deep North Kuwait Jurassic Asset for Improved Completion Efficiency and Well Productivity

机译:15,000-PSI额定水力机械多阶段完成的成功安装和顺序激活的现场应用,用于改进完成效率和生产率的改进

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Optimization of permanent liner completions in the North Kuwait Jurassic Gas(NKJG)reservoirs has been an ongoing challenge progressed on a steep learning curve within the last decade. Various completion options are field-tested in determining the optimal completion hardware and activation methodology. The asset’s objectives have been multi-dimensional: preserve natural fractures,minimize formation damage,segregate,stimulate and activate optimally,while installing permanent completions hardware efficiently,which can withstand 15,000-psi differential pressure at high temperature and sour gas environment and sustain production for the well life of over 20 years. NKJG faces the enormous task of increasing the hydrocarbon production potential by over 200% within a short time period. The reservoirs are high-pressured and high-temperature(HTHP)gas condensate assets with tight matrix properties(i.e. <0.1 mD permeability),in variation with naturally fractured sections within flow-zones separated into eight segments. Preserving the natural fractures,removal of near wellbore damage and segregating flow-zones based on lithology and critical reservoir properties are important especially in peripheral subsurface locations,where the realization of full reservoir potential is not only essential for production success,but also required for appraisal of boundary conditions. For realizing these objectives,the asset custom-designed a multi-stage completion system with hydro-mechanical liner hanger packer,openhole packers,hydraulic anchor and multiple frac ports set and activated as a drop-ball system. Due to the high completion loads,differential body and packer rating are manufactured to 15,000 psi using corrosion resistant alloy throughout,with the PBR and seal-bore assembly designed to withstand differential pressures and contraction during multiple fracturing events. Custom-designed multi-stage completion assembly(MSC-HP)was successfully installed,sequentially hydraulic-fracced and commingle-tested on flowback. Customized operational guidelines were established including a pre-set success criterion,openhole and caliper log sequences,tie-back cementation and subsequent clean out trips,followed by hole conditioning and reamer runs to compute the final drag and friction forces. Differential sticking risks were mitigated by avoiding the”pressure ramps”exacerbated by differential depletion evident in the area. Reservoir was segmented in three distinct intervals to maximize flow potential. As a result,the asset’s objectives were successfully met,with the additional benefits of proving multiple zone activation,each with a complicated sequence of operational events,performed sequentially in four days. This paper documents the project cycle from successful planning and design,to installation and execution phases of the MSC-HP in peripheral deep NKJG asset. Key learnings and critical factors,which led to the successful well results in spite of less favorable subsurface location are summarized. Added complications due to the severe NKJG specs will be discussed as the number of global analogues is scarce leading to limited opportunities for the industry to learn from in unconventional/conventional mix layered carbonates.
机译:北科威特侏罗纪天然气(NKJG)水库的永久衬垫完井优化一直是在过去十年内的陡峭学习曲线上进展的持续挑战。在确定最佳完成硬件和激活方法中,可以测试各种完成选项。资产的目标已多维:保持自然骨折,最大限度地减少形成损坏,隔离,刺激和激活,在高效安装永久性完成硬件,可承受高温和酸性气体环境的15,000-psi差压,并维持生产井里的寿命超过20年。 NKJG面临巨大的任务,即在短时间内将碳氢化合物生产潜力增加超过200%。储存器是高压和高温(HTHP)气体冷凝物资产,具有紧密基质特性(即<0.1 MD渗透率),在流动区内的自然裂缝部分变化,分为八个区段。保护自然骨折,除以基于岩性岩石和关键储层的岩石损坏和隔离流量区的拆除尤其是在外围地下地点的情况下重要,其中整个储层潜力的实现不仅适用于生产成功,而且还需要进行评估边界条件。为了实现这些目标,资产定制设计了一种带有水力机械衬里吊架封装机,遮光罩封装机,液压锚和多个FRAC端口的多级完成系统,并作为滴球系统被激活。由于高完成载荷,差动体和封隔器额定值以耐腐蚀合金制造为15,000psi,PBR和密封孔组件设计用于在多个压裂事件期间承受差压压力和收缩。定制设计的多级完成组件(MSC-HP)已成功安装,顺序液压 - 微压和通用在流量上进行了测试。建立了定制的运营指南,包括预先设置的成功标准,镂空和卡钳日志序列,焊接胶粘剂和随后的清洁跳闸,其次是孔调节和铰刀运行以计算最终的阻力和摩擦力。通过避免通过该地区的差异耗尽恶化的“压力斜坡”来缓解差分粘性风险。储存器以三个不同的间隔分段,以最大化流动势。因此,资产的目标成功达到了证明多个区域激活的额外效益,每个份额都有一个复杂的操作事件序列,在四天内顺序执行。本文从成功的规划和设计中记录了项目周期,在外设深度NKJG资产中的MSC-HP安装和执行阶段。关键学习和关键因素导致成功良好的导致仍然仍然存在较不利的地下地点。由于严重的NKJG规范,将讨论由于严重的NKJG规范而增加的并发症,因为全球类似物的数量稀缺导致行业的有限机会,以便在非常规/常规混合层状碳酸盐中学习。

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