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Development of methods for evaluating formation permeability using data from logs and cores.

机译:利用测井和岩心数据开发评价地层渗透率的方法。

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摘要

Two methods have been developed for evaluating formation permeability using log data. One method is an integrated simulation technique that can be used to analyze time-lapse logging measurements. The second method involves a multiple parameter correlation of core permeability with logging measurements. These two methods have been used to analyze field data from three Gas Research Institute (GRI) test wells.;Formation permeability controls the strategies involving well completion, well stimulation and reservoir management. In general, permeability can be evaluated from core analysis, well test analysis, and well log analysis. The most economic method to evaluate formation permeability will usually be from well logs. However, the available methods to evaluate permeability from well logging data are difficult to apply and may not be accurate. The petroleum industry needs more accurate and easier methods to estimate permeability from well logging data.;When a well is drilled, mud filtrate invades the formation around the borehole. The volume of mud filtrate lost to a formation will be a function of formation permeability, the drilling mud properties, and the time the formation is exposed to the drilling mud system. As mud filtrate invasion progresses, unique salinity profiles and, thus, unique resistivity profiles are created in the formation near the borehole. Therefore, the data from well logs change with time. By observing and analyzing the changes in well logging data versus time, one can estimate formation permeability, provided one can characterize the mud system and the mud cake behavior.;To simulate logging tool response to the mud filtrate invasion process, three simulators have been integrated using a KAPPA-PC expert system as a platform. These three simulators are (1) a two-phase, two-dimensional, fully implicit reservoir simulator, (2) a convection transport simulator, and (3) a logging tool response simulator. The permeability values for several intervals in two GRI test wells have been estimated by history matching the time-lapse logging measurements.;The new multiple parameter correlation developed in this dissertation has been applied to three GRI test wells. The advantages of the new correlation are (1) the effects of shale volume on permeability are taken into account, and (2) the uncertainty surrounding irreducible water saturation or grain diameter measurement has been eliminated. The multi-parameter correlations work well for the formations analyzed; however, the specific correlations do not apply universally.;The permeability values from simulation and correlation have been compared with the average core permeability, resulting in good agreement. The methodology developed in this dissertation can be applied to virtually any formation to estimate formation permeability from time-lapse logging data.
机译:已经开发了两种使用测井数据评估地层渗透率的方法。一种方法是集成的模拟技术,可用于分析延时测井测量结果。第二种方法涉及岩心渗透率与测井测量的多参数关联。这两种方法已用于分析来自三个天然气研究所(GRI)测试井的现场数据。地层渗透率控制着涉及完井,增产和储层管理的策略。通常,可以通过岩心分析,试井分析和测井分析来评估渗透率。评估地层渗透率最经济的方法通常是测井。但是,从测井数据评估渗透率的可用方法难以应用,而且可能不准确。石油行业需要更准确,更简便的方法来根据测井数据估算渗透率。钻井时,泥浆滤液会侵入井眼周围的地层。损失到地层的泥浆滤液的体积将是地层渗透率,钻探泥浆性质以及地层暴露于钻探泥浆系统的时间的函数。随着泥浆滤液侵入的进行,在井眼附近的地层中产生了独特的盐度剖面,并因此产生了独特的电阻率剖面。因此,来自测井的数据随时间变化。通过观察和分析测井数据随时间的变化,只要能表征泥浆系统和泥饼行为,就可以估算地层渗透率。为了模拟测井工具对泥浆滤液侵入过程的响应,已集成了三个模拟器使用KAPPA-PC专家系统作为平台。这三个模拟器是(1)两相,二维,完全隐式储层模拟器,(2)对流输运模拟器和(3)测井工具响应模拟器。通过历史记录与时移测井资料的对比,估算了两个GRI测试井中几个层段的渗透率值。本文开发的新的多参数相关性已应用于三个GRI测试井中。新关联的优点是:(1)考虑了页岩体积对渗透率的影响,(2)消除了不可约水饱和度或粒径测量的不确定性。多参数关联对于所分析的地层非常有效。但是,具体的相关性并不能普遍适用。;已将模拟和相关性的渗透率值与平均岩心渗透率进行了比较,得出了很好的一致性。本文开发的方法可以应用于几乎任何地层,从时差测井数据估算地层渗透率。

著录项

  • 作者

    Yao, Caiyin.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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