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An Integrated Approach To Design Completions for Horizontal Wells for Unconventional Reservoirs

机译:非常规油藏水平井完井设计的综合方法

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摘要

This paper presents a comprehensive and integrated workflow to design completions for a heavy-oil recovery process that involves injection and production through the same well. Unlike in traditional completion design, the transient effects are particularly important to consider while analyzing the long-term performance for these types of completions to capture the effect of variations or uncertainties in reservoir and fluid-flow characteristics over time. The proposed integrated workflow involves initial screening and selection of flow-restricting completions that can meet the desired injection and production performance based on a detailed well-bore hydraulics modeling tool. A select few completions are then analyzed for longer-term performance using a reservoir simulator that couples the flow-restricting nature of completions with flow in the reservoir. The use of best-in-art wellbore hydraulics model and reservoir simulator in a staged process yields an effective way to assess and optimize the completion design for these wells in a reduced time span. The workflow disclosed here can be used to design effective completions for a broad class of cyclic liquid-injection methods for heavy-oil resources.
机译:本文提出了一个全面而集成的工作流程,以设计稠油采收过程的完井过程,该过程涉及通过同一口井进行注入和生产。与传统完井设计不同,在分析这类完井的长期性能以捕获随时间变化的储层和流体特征的不确定性时,考虑瞬态影响尤为重要。拟议的集成工作流程包括基于详细的井眼液压建模工具,可以满足期望的注入和生产性能的限流完井的初步筛选和选择。然后,使用储层模拟器将完井的限流特性与储层中的流量耦合,对少数完井进行长期性能分析。在分阶段的过程中使用最先进的井眼水力学模型和油藏模拟器,可以在较短的时间内评估和优化这些井的完井设计。此处公开的工作流程可用于为稠油资源的各种循环液体注入方法设计有效的完井方法。

著录项

  • 来源
    《SPE journal》 |2013年第6期|1026-1032|共7页
  • 作者单位

    ExxonMobil Upstream Research Company;

    ExxonMobil Upstream Research Company;

    ExxonMobil Upstream Research Company;

    ExxonMobil Production Company;

    Imperial Oil Limited;

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  • 原文格式 PDF
  • 正文语种 eng
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