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Determination of mechanical and hydraulic behavior of tensile fractures under multiphase flow using x-ray computed tomography.

机译:使用X射线计算机体层摄影术确定多相流下拉伸断裂的力学和水力行为。

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摘要

Understanding fracture morphology in terms of a porous media is necessary for accurate simulation of multiphase transport in fractured rocks. Although ambient-stress methods for obtaining fracture morphology exist, previous research lacks the ability to map fracture closure as a function of stress or the distribution of immiscible phases in the fracture. This study is focuses in the mechanical and hydraulic behaviors of fractures under multiphase flow at different confining stress.;A twenty-five-millimeter cylindrical sandstone samples were artificially fractured in tension and placed under confining stress in an x-ray transparent vessel. The fracture morphology was characterized under dry conditions and at different confining stress using high-resolution x-ray computed tomography. Multi-phase fluid distributions in the fracture were mapped between limits of the mobile saturation range using controlled fractional flows. These distributions were correlated with flow rate and pressure drop measurements. We observed order of magnitude differences in effective permeabilities under conditions of nearly constant overall fracture saturations. These differences in permeability are associated with re-arrangement of the physical distribution of the phases. Distributions associated with low permeability are unstable on a time frame of several hours, much longer of the time frame associated with snap-off phenomena. This phenomenon may be responsible for similar field observations reported in the literature.
机译:为了精确模拟裂隙岩中的多相运移,必须从多孔介质的角度了解裂隙形态。尽管存在用于获得裂缝形态的环境应力方法,但先前的研究缺乏根据应力或裂缝中不混溶相的分布绘制裂缝闭合图的能力。这项研究的重点是在不同围压下在多相流下的裂缝的力学和水力行为。;将25毫米的圆柱形砂岩样品在拉伸作用下人工破裂,并置于X射线透明容器的围压下。使用高分辨率X射线计算机断层扫描在干燥条件下和不同的限制应力下表征断裂形态。使用受控的分流,将裂缝中的多相流体分布绘制在活动饱和范围的界限之间。这些分布与流量和压降测量值相关。我们观察到在几乎恒定的总裂缝饱和度条件下有效渗透率的数量级差异。渗透率的这些差异与相的物理分布的重新布置有关。与低渗透率相关的分布在几个小时的时间范围内不稳定,远比与折断现象相关的时间范围长。这种现象可能是文献报道的类似实地观察的原因。

著录项

  • 作者

    Alvarado, Freddy.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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