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Thru-Tubing Conveyed Rigless ESP Technology: A 20-Year Case History of Wireline Retrievable ESPs

机译:Thru-Tubing传达的Rigless ESP技术:电缆可检索的20年案例历史

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Electrical submersible pump(ESP)technology is a proven artificial lift method for shallow,low pressure reservoirs like those found in the West Sak viscous oil field in Alaska.However,the unconsolidated nature of the West Sak sands challenges the long-term lifting performance and reliability of conventional ESP systems due to sand production.This challenging environment causes ESP pump erosion and accumulation of sand in the tubing above the pump and in the lower completion below the ESP. This paper presents a 20-year case study of the of the world’s largest,longest-running population of thrutubing conveyed(rigless)electric submersible pumps.Conventional ESP’s require a rig to replace a pump or motor when either fails.In”rigless”systems,some of the components(pump only for Generation 1, and pump,seal,and motor for Generation 2)can be pulled and replaced using slickline(SL),coiled tubing (CT),or tractor,depending on wellbore deviation.Generation 2 systems consist of a downhole side pocket mandrel(or docking station)with a wet-connect attached to the electric cable and deployed on 4-1/2”or larger tubing.Not only do these systems allow both the pump,seal,and motor to be retrieved without a rig, they have the significant advantage of allowing 3.80”fullbore access below the pump setting depth without pulling tubing.This allows non-rig interventions such as reperforating,production profiles,CT cleanouts, CT drilling etc.to be performed after the pump,seal,and motor are pulled with conventional SL or CT. Once the desired intervention has been completed,the pump,seal,and motor can be redeployed with SL - wet-connecting to the downhole side pocket mandrel.A well with a conventional ESP would require pulling the tubing with a rig prior to and reinstalling the tubing following any well intervention below the pump setting depth.”Rigless”technology has significantly increased production uptime and reduced the cost of ESP interventions in these wells. The case study includes the analysis of the two generations of rigless ESP systems,quantifying the success rate in varying conditions in over 300 rigless ESP replacements in a high sand,high deviation environment on Alaska’s North Slope.
机译:电气潜水泵(ESP)技术是一款经过验证的人工升力方法,适用于浅,低压水库,如阿拉斯加西沙崎油田中发现的那些。无论何种,西萨克沙的不整合性质挑战长期提升性能和由于砂生产导致的传统ESP系统的可靠性。本挑战环境导致泵上方的管道中的砂泵侵蚀和蓄积,并在尤其如下完成。本文提出了一个20年的案例研究,对世界上最大,最长运行的划分的历史(严格的)电潜水泵。如果无论是失败的话,维护ESP需要钻机更换泵或电机。“Rigless”系统,可以使用Slickline(SL),线圈管(CT),拖拉机,取决于Wellbore偏差,将其扣除和更换各个组件(仅适用于第1代,以及第2代的泵,密封和电机2).Generation 2系统由井下侧袋心轴(或扩展坞)组成,湿旋连接在电缆上,并在4-1 / 2“或较大的管道​​上部署。仅这些系统允许泵,密封和电机要在没有钻机的情况下检索,它们具有允许3.80“的泵设置深度下方的填充空气进入而无需拉动管道的显着优势。这允许非钻机干预,例如重复,生产简介,CT清洁,CT钻孔等泵,密封和电动机拉动后用常规SL或CT。一旦完成所需的干预,泵,密封和电机可以用SL - 湿式连接到井下侧袋Mandrel.A良好,常规ESP将在之前用钻机拉动管道并重新安装在泵设置深度下方的任何井干预后的管道。“Rigless”技术的生产正常运行时间显着增加,降低了这些井中的ESP干预的成本。案例研究包括分析了两代无铁ESP系统,量化了在阿拉斯加北坡上的高砂,高偏差环境中的300多个严格ESP替代品种的成功率。

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