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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >A Novel Workflow for Using Fiber-Optic Telemetry-Enabled Coiled Tubing in Candidate Selection
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A Novel Workflow for Using Fiber-Optic Telemetry-Enabled Coiled Tubing in Candidate Selection

机译:使用光纤遥测的候选光纤的线圈管的新型工作流程

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Formation damage is an undesirable operational and economic problem that can occur throughout the lifecycle of oil and gas wells due to several reasons such as using incompatible fluids during workover operations, fines migration, clay swelling, emulsions formation, and scale and organic depositions. Also, newly drilled wells sometimes do not produce optimally due to the damages caused by the drilling fluids. Therefore, addressing formation damage issues to ensure optimum recovery of hydrocarbons needs more efforts on identifying the damage mechanism and quantifying the skin factor. Skin factor is a dimensionless number that reflects the production impairment due to near-wellbore reduction of permeability. So, if this number is zero it means the well is intact, however; if this number is positive that means the well is damaged. The workflow presented in this paper focuses on the use of fiber-optic telemetry-enabled coiled tubing (FOTECT) for production enhancement in real-time by quantifying skin factor, estimating the flow potential and determining the candidate wells for matrix stimulation. This new technology can deliver pressure data in real-time during a typical unloading operation that could be further used in well test analysis for estimating key reservoir properties such as skin (S), flow capacity (Kh), drainage area (A) and initial reservoir pressure (Pi). The new technology reduces the operational time required for well test analysis compared with conventional downhole recording systems (DHR) by two-fold while enabling the performance of an acid treatment in the same run.Moreover, in this study a workflow and user-interface software using java language were developed to execute the workflow through a two-step streamlined process:1. Assessing the well damage through quantifying the skin value from pressure transient analysis (PTA) utilizing the downhole pressure data acquired from coiled tubing in real-time.2. Inflow performance relationship (IPR) construction of the well using Vogel’s correlation and productivity index equation under the current condition and under ideal condition (Zero skin) to assess the feasibility of a stimulation treatment.The paper will present the application of this technique on simulated field data to show how FOTECT could be used to diagnose and treat the well in the same run. The output obtained from the developed software will be compared against the output of an industry popular well-test suite (Sapphire). Also, a case study in which this technology was used for pressure transient analysis for artificial lift design will be presented to show the applicability of this novel approach and to prove it can yield matching results with conventional techniques in a more efficient way. From the simulated data the developed software estimated the skin factor to be nine from both build-up and draw down analysis, which was later matched by Sapphire commercial Suite; moreover, it was shown that the current production rate of 792-BPOD can be increased to 1722-BOPD post a successful stimulation treatment.
机译:由于几种原因,例如在工程运算过程中使用不相容的流体,侧重液,粘土溶胀,乳液形成和尺度和有机沉积,可以在整个油气井的整个生命周期中发生的不良操作和经济问题此外,由于钻井液引起的损坏,新钻井井有时不会产生最佳的。因此,解决地层损害问题以确保烃的最佳回收需要更多地努力识别损伤机制并量化皮肤因子。皮肤因子是一种无量纲数,反映了由于渗透率的近井眼近井眼的生产障碍。因此,如果这个数字为零,则意味着井完好无损;如果这个数字是积极的,这意味着井是损坏的。本文提出的工作流程侧重于使用光纤遥测的线圈管(FOTECT)来实时地通过量化皮肤因子,估计流动势并确定矩阵刺激的候选孔。这种新技术可以在典型的卸载操作中实时提供压力数据,该操作可以进一步用于估计诸如皮肤,流量(KH),排水区(A)和初始的关键储层性能储层压力(PI)。与传统井下记录系统(DHR)相比,新技术减少了与常规井下记录系统(DHR)进行了两倍的井测试分析所需的操作时间,同时在该研究中能够在同一运行中的性能。开发使用Java语言来通过两步简化的进程执行工作流程:1。通过在实时从盘绕管道获取的井下压力数据来评估从压力瞬态分析(PTA)的皮肤值来评估井损伤。流入性能关系(知识产权)在当前条件下使用Vogel相关性和生产率指数方程的井井的构建,并在理想状态(零皮肤)下评估刺激处理的可行性。本文将介绍该技术在模拟场上的应用数据以展示如何用于诊断和处理同样运行的良好数据。将从开发软件中获得的输出与行业流行的测试套件(蓝宝石)的输出进行比较。此外,将提出该技术用于人工升力设计的压力瞬态分析的案例研究,以表明这种新方法的适用性和证明它可以以更有效的方式产生与传统技术的匹配结果。从模拟数据中,开发的软件估计皮肤因子从积累和抽取分析中的九个,后来由蓝宝石商业套件匹配;此外,表明,792-BPOD的当前生产率可以增加至1722-BoPD术后成功的刺激处理。

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