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Effective Approach to Wellbore Clean Out Operation: A Case Study from Zawtika Phase 1B

机译:井筒清理操作的有效方法:Zawtika阶段1B的案例研究

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Free sand movement and fines mobilization during production in Zawtika field is one of the main challenges and can result in failures of production systems leading to SSHE exposure,loss of production or even well suspended.The optimum completion design Cased Hole Gravel Pack(CHGP)allows the well to maintain solid-free gas production with(limiting skin)selectivity,longevity and integrity throughout the life cycle.The Sand Control completion deployment,effectiveness and well productivity is directly related to the cleanliness of cased well bore and completion brine.The Total Solid Suspension(TSS)and Nephelometric Turbidity Units(NTU)or clarity of the fluid is the key indicator of well cleanliness.Zawtika Phase 1A post job review highlighted that Wellbore Cleanout(WBCO)is one of the most time consuming operation.To overcome this challenge and create areas of opportunities for improvement based on efficiencies,several possible solutions identified below.Excessive pipe dope,metal debris and rust from casing can collect within the well bore,bridge in perforation tunnels and ultimately damage reservoir or seriously hinder running completion components.The correct combination of Pipe Dope applying procedure,Chemical Displacement,Mechanical Movement and Hydraulic Displacement are the main key contributing factors to improved operation safety,deployment operational efficiency.Lab scale test conducted to simulate test for pipe dope removal chemical,Mechanical Casing Scraper and casing brush simulate testing in order to remove casing vanishing coating,also applying wellbore cleaning concept from drilling-rotational,pump rate and trip speed Recovery of metal or other debris in a limited number of runs gives several advantages:-Minimize reservoir damage-Reduces risks of screen plugging-Saves rig time.This paper will describe planning process,pipe dope procedure,wellbore clean out chemical / mechanical tool selection based on laboratory testing,displacement techniques,and operation summary.The potential cost saving to project can be more than 5 Million USD.The combination of this improvement in WBCO operation is able to reduce the operation time and cost in Phase 1B more than 71% comparing to Phase 1A performances in 2014-2015
机译:在Zawtika领域生产过程中的自由砂运动和罚款动员是主要挑战之一,可能导致生产系统的故障导致SSHE暴露,生产损失甚至悬挂。最佳完成设计套管砾石包(CHGP)允许在整个生命周期中保持无固液生产(限制性皮肤)选择性,寿命和完整性的良好。砂控制完成部署,有效性和良好的生产率与套筒孔孔和完成盐水的清洁直接相关。总数固体悬浮液(TSS)和浊度浊度单元(NTU)或流体的清晰度是井清洁度的关键指标。Zawtika第1A阶段1A职位审查突出显示井筒清洁(WBCO)是最耗时的操作之一。克服这一点基于效率的改进机会的挑战和创造领域,下面鉴定了几种可能的解决方案。绝经管涂料,金属碎片和从外壳中的锈蚀可以在井筒内收集,穿孔隧道桥和最终损坏水库或严重阻碍运行完成组件。管涂料施加程序的正确组合,化学位移,机械运动和液压位移是改进的主要关键主要因素操作安全性,部署操作效率。对管道涂料去除化学,机械外壳刮板和壳刷进行模拟试验进行模拟试验,以拆除外壳消失涂层,也施加井筒清洁概念,从钻井旋转,泵速度和行程中施加井筒清洁概念在有限数量的运行中速度恢复金属或其他碎屑提供了几个优点: - 耗尽储层损伤 - 减少屏幕堵塞式风险的风险。本文将描述规划过程,管道涂料,井筒清洁化学/机械工具基于实验室测试,位移技术和操作的选择n概要。潜在的节能成本可能超过500万美元。这种改进的组合在WBCO操作中的组合能够降低2014 - 2015年第1阶段的阶段1B的运作时间和成本,比较2014-2015

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