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Investigation of relations between the geometrical properties and hydraulic properties of jointed rock through numerical simulation.

机译:节理岩石几何特性与水力特性关系的数值模拟研究。

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摘要

Effect of joint geometry parameters and joint transmissivity on the hydraulic properties of jointed rock including the equivalent permeability tensor is investigated through a series of numerical experiments. The equivalent continuum hydraulic behavior of jointed rock was found to be sensitive to the orientation of the joint sets in a joint network system. The chances for the equivalent continuum behaviour were found to increase with the increase of joint density and joint size. It was found that for some joint systems, the equivalent continuum behavior does not exist irrespective of the rock block size; joint systems with low orientation angles, low joint densities and small joint sizes seem to have chance belonging to this category. The equivalent continuum behavior of a joint system can be expressed with respect to a cut-off value for the first invariant of fracture tensor (F0). If the F0 value for a given joint network is more than the cut-off value, then the joint system can be approximated by an equivalent continuum. For the joint systems investigated in this study, values between 10 and 30 were found for cut-off F0. A threshold value of F0 between 3 and 6 was found to achieve a non-zero average block permeability (K0). Both the threshold value and the cut-off value of F0 were found to depend on the relative orientations of joint sets. Chances to reach equivalent continuum behavior for a rock mass having a certain joint configuration increases with the increase of block size. REV size for a joint system was found to depend on the orientation of the joint sets and on the distribution of joint size and density. REV size seems to decrease with increasing joint density. The block size corresponding to the aforementioned cut-off F0 can be considered to provide the REV size for a given joint configuration. For a considered joint network, K0 increases with the increase of block size until the block size is equal to REV size. The K0 value at the REV size for a joint system increases with increase in joint size and joint density. The relation between K0 and F0 seems to depend on the relative orientation of the joint sets in the joint network. Joint hydraulic conductivity plays a major role on the equivalent continuum behaviour and permeability anisotropy. A non linear relation seems to exist between the directional permeability and the fracture tensor component for the connected joint configuration when rock blocks contain minor discontinuities. For rock blocks containing major discontinuities this relation becomes linear.
机译:通过一系列数值实验,研究了节理几何参数和节理透射率对节理岩石包括等效渗透率张量的水力特性的影响。发现节理岩体的等效连续介质水力学行为对节理网络系统中节理集的方向敏感。发现等效连续体行为的机会随着关节密度和关节尺寸的增加而增加。结果发现,对于某些节理系统,无论块体大小如何,都没有等效的连续体行为。具有低定向角,低关节密度和较小关节尺寸的关节系统似乎有机会属于此类。关节系统的等效连续体行为可以相对于断裂张量的第一不变式(F0)的临界值表示。如果给定关节网络的F0值大于截止值,则可以通过等效连续体来近似关节系统。对于本研究中研究的关节系统,截断F0的值在10到30之间。发现F0的阈值介于3和6之间,以实现非零的平均块渗透率(K0)。发现F0的阈值和截止值都取决于关节组的相对方向。具有特定节理构型的岩体达到​​等效连续体行为的机会随砌块尺寸的增加而增加。发现关节系统的REV大小取决于关节组的方向以及关节大小和密度的分布。 REV大小似乎随着关节密度的增加而减小。可以认为与上述截止F0对应的块大小可为给定的关节配置提供REV大小。对于考虑的联合网络,K0随着块大小的增加而增加,直到块大小等于REV大小为止。关节系统的REV大小处的K0值随关节大小和关节密度的增加而增加。 K0和F0之间的关系似乎取决于关节网络中关节集合的相对方向。联合水力传导率在等效连续体行为和渗透率各向异性中起着重要作用。当岩石块包含较小的不连续性时,连接节理的方向渗透率和断裂张量分量之间似乎存在非线性关系。对于包含主要不连续性的岩石块,此关系变为线性。

著录项

  • 作者

    Panda Bibhuti Bhusan.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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