首页> 外文期刊>The APPEA Journal >INTEGRATION OF RESERVOIR AND WELL FLOW SIMULATORS FOR ANALYSIS OF HORIZONTAL WELL PERFORMANCE
【24h】

INTEGRATION OF RESERVOIR AND WELL FLOW SIMULATORS FOR ANALYSIS OF HORIZONTAL WELL PERFORMANCE

机译:储层和井流动模拟器的集成用于水平井性能分析

获取原文
获取原文并翻译 | 示例
           

摘要

The optimisation of a well's performance along its life cycle demands improved understanding of processes occurring in the reservoir, near wellbore and inside the well and flow lines. With this purpose, the industry has been conducting, for several years, initiatives towards reservoirwellbore coupled simulations.rnThis paper proposes a simple way to couple the near wellbore reservoir and the wellbore hydraulics models, which contributes to the optimisation of well completion design (before and while drilling the well) and the maximisation of the well inflow performance during production phases, with support of real-time and historical data. The ultimate goal is the development of an adaptive (self-learning) system capable of integrated, real-time analysis, decision support and control of the wells to maximise productivity and recovery factors at reservoir/field level. At the present stage, the system simulates the inflow performance based on an iterative algorithm. The algorithm links a reservoir simulator to a hydraulics simulator that describes the flow inside the wellbore. The link between both simulators is based on equalisation of flow rates and pressures so that a hydraulic balance solution of well inflow is obtained. This approach allows for full simulation of the reservoir, taking into consideration the petrophy sical and reservoir properties, which is then matched with the full pressure profile along the wellbore. This process requires relatively small CPU time and provides very accurate solutions. Finally, the paper presents an application of the system for the design of a horizontal well in terms of inflow profile and oil production when the production is hydraulically balanced.
机译:要在整个生命周期内优化油井的性能,需要更好地了解储层,井眼附近以及油井和流水线内部发生的过程。为此,业界多年来一直在进行油藏-井筒耦合模拟的倡议。rn本文提出了一种简单的方法来耦合近井眼油藏和井眼水力模型,这有助于优化完井设计(之前和之后)。 (同时钻探井),并在生产阶段最大化井流入性能,并支持实时和历史数据。最终目标是开发一种自适应(自学习)系统,该系统能够对井进行集成,实时分析,决策支持和控制,以最大化油藏/油田水平的生产率和采收率。在当前阶段,系统基于迭代算法模拟流入性能。该算法将油藏模拟器链接到描述井眼内部流动的液压模拟器。两个模拟器之间的联系是基于流量和压力的均衡,从而获得井流入的水力平衡解决方案。这种方法考虑了岩石的物理性质和储层特性,可以对储层进行完全模拟,然后将其与沿井眼的完整压力分布图相匹配。此过程需要相对较少的CPU时间,并提供了非常准确的解决方案。最后,本文介绍了该系统在水力平衡时在流入剖面和采油方面用于水平井设计的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号