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Using E-Coiled Tubing for Production Logging While N2 Lifting in Horizontal/Deviated Exploratory Well

机译:使用E-Cuthed管道进行生产测井,而N2在水平/偏离探索性井中提升

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Objectives/Scope: Objective of this paper is to describe a methodology applied to overcome production logging challenges in a horizontal / deviated, low pressure and high water cut well in order to determine flow profile and zonal phase contribution. Method, Procedures, Process: Conventional production logging with Electric wireline in the deviated / horizontal and low pressure wells is becoming a challenge. Measuring an inflow profile and identifying water producing intervals in low pressure high water cut wells require an improved methodology. Electric wireline conductor cable placed inside coiled tubing (CT) creates new opportunities for logging and induces well production while logging. Subsurface information obtained from recently drilled Jurassic wells indicates presence of hydrocarbon accumulation beyond present limit. A new well has been drilled and completed with 7 inch liner to prove the hydrocarbon in a new reservoir. The well was perforated in underbalanced condition and tested with Drill Stem Test (DST). There are four perforation intervals in the deviated profile. The promising four layered carbonate formations produced 100% water while lifting the well with Nitrogen. Acquisition of flow profile data in this well is vital for decision making. It was required to diagnose the contributing and non- contributing intervals to decide on the suitable remedial action. Low pressure with high water cut reservoir becomes a challenge in measuring inflow profile and identifying water producing intervals. Electric Coiled Tubing (E-CT) was used to convey the production logging tool while pumping Nitrogen (N2)to lift the well production to acquire inflow profile data. Surface well testing equipment was used to measure the surface flow rates. Shut-in survey and flowing survey were performed to identify presence of water behind casing, cross flow and water entry. Multi-finger Imaging Tool (PMIT) was used to measure the internal diameter of the casing strings to confirm the presence of the perforation intervals. Results, Observations, Conclusions: Well production was induced by pumping N2 through E-CT while production logging. Inflow profile data was successfully acquired from a deviated, low pressure and high water cut well using production logging tool (PLT) attached with coil tubing. Production logging results showed that all of the water production is coming from the top part of the third perforation intervals. During Shut-in Survey, it was observed that no cross flow between the perforation intervals and no observation of flow behind casing above or below the perforation intervals. Furthermore, it was observed that the PMIT logs clearly proved the presence of all 4 perforation intervals. The data acquired using E-CT production logging confirmed the contributing and non-contributing intervals which provided a clear vision to take a remedial action. Novel / Additive Information: For the first time in Kuwait, E-CT was successfully used to record flow profile in horizontal/deviated exploratory well while Nitrogen lifting. This successful application will help to acquire production logging in the wells with similar condition.
机译:目标/范围:目的本文的是描述的方法适用于克服井,以确定流分布和纬向相位贡献在水平/偏离,低压和高含水生产测井的挑战。方法,程序,过程:常规生产测井与所述偏斜/水平和低压阱电有线正在成为一种挑战。测量流入型材和识别低压高水切口井中的水产生间隔需要改进的方法。放置在盘绕管内的电线导体电缆(CT)内部造成新的伐木机会,并在测井时诱导良好的生产。从最近钻出的侏罗纪孔获得的地下信息表明存在超出当前限制的烃积累。一个新的井被钻和7英寸衬垫完成证明烃在一个新的储器。井在不平衡状态下穿孔,并用钻干茎试验(DST)进行测试。偏离轮廓中有四个穿孔间隔。有前途的四层碳酸盐形成100%的水,同时用氮气提升孔。在这个井中获取流程曲线数据对于决策至关重要。有必要诊断贡献和非贡献间隔来决定适当的补救措施。高水位储存器的低压在测量流入型材和识别水产生间隔时成为挑战。电气连续油管(E-CT)使用,同时抽氮气(N2)解除井生产收购流入剖面数据要传达的生产测井工具。表面良好的测试设备用于测量表面流速。进行了关闭调查和流动调查,以确定套管后面的水,交叉流量和水处理。多指成像工具(PMIT)用于测量套管串的内径,以确认存在穿孔间隔。结果,意见,结论:井生产诱导抽N2通过E-CT,而生产测井。使用带有线圈管连接的生产测井工具(PLT)成功地从偏离,低压和高水位井中获得了流入简档数据。生产测井结果表明,所有的水产产量都来自第三个穿孔间隔的顶部。在关闭调查期间,观察到穿孔间隔之间没有交叉流动,并且没有观察到上方或低于穿孔间隔的壳体后面的流动。此外,观察到PMIT日志清楚地证明了所有4个穿孔间隔的存在。使用E-CT生产记录获取的数据确认了提供明确愿景的贡献和非贡献间隔,以采取补救措施。新颖/添加剂信息:有关在科威特第一次,E-CT被成功地用于记录流分布在水平/斜井探井而氮升降。这种成功的应用程序将有助于获得具有类似条件的井中的生产记录。

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