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首页> 外文期刊>Journal of structural geology >Sensitivity of fluid flow to deformation-band damage zone heterogeneities: A study using fault facies and truncated Gaussian simulation
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Sensitivity of fluid flow to deformation-band damage zone heterogeneities: A study using fault facies and truncated Gaussian simulation

机译:流体对变形带破坏带非均质性的敏感性:基于断层相和截断高斯模拟的研究

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摘要

We demonstrate that truncated Gaussian simulation (TGS), which is typically used for modeling of sedimentary rocks, can be employed to reproduce detailed damage zone structure as observed in outcrops. The basic modeled units employed are fault facies classified according to deformation density. Published damage zone field maps are re-drawn as fault facies maps and used for deriving geostatistical descriptions of model input parameters. We apply the modeling method for damage zones related to three scenarios: an isolated fault, branching faults and double-tip interacting faults. Constrained by the resulting TGS models, a series of damage zone permeability models are generated by systematically modulating five modeling factors related to different heterogeneity scales. Single-phase flow simulations reveal that fault facies proportion and damage zone width are the most influential factors, followed by deformation band frequency. Deformation band permeability and fault facies extent are the least important factors. Modifying fault facies proportion and damage zone width mainly change the flow retardation/enhancement in the models, whereas modifying deformation band frequency, deformation band permeability and fault facies extent mainly change the flow tortuosity in the models. Finally, we examine hierarchical modeling and upscaling procedures to incorporate our fine-scale models into flow simulation models.
机译:我们证明了通常用于沉积岩建模的截断高斯模拟(TGS),可以用来重现露头中观察到的详细的破坏带结构。所采用的基本建模单元是根据变形密度分类的断层相。将已发布的损坏区域场图重新绘制为断层相图,并用于导出模型输入参数的地统计学描述。我们将建模方法应用于与以下三种情况相关的损坏区域:孤立断层,分支断层和双尖端相互作用断层。受所得TGS模型的约束,通过系统地调制与不同异质性尺度有关的五个建模因子,生成了一系列破坏区渗透率模型。单相流模拟表明,断层相比例和破坏带宽度是影响最大的因素,其次是变形带频率。变形带渗透率和断层相范围是最不重要的因素。改变断层相比例和破坏带宽度主要改变了模型的流动延缓/增强作用,而改变变形带频率,变形带渗透率和断层程度改变了模型的流动曲折度。最后,我们研究了层次化建模和升序过程,以将我们的精细模型集成到流仿真模型中。

著录项

  • 来源
    《Journal of structural geology》 |2013年第7期|60-79|共20页
  • 作者单位

    Uni Centre for Integrated Petroleum Research (C1PR), PO Box 78 JO. N-5020 Bergen, Norway,Department of Earth Science, University of Bergen, Realfagbygget, Allegaten 41, N-5007 Bergen, Norway;

    Uni Centre for Integrated Petroleum Research (C1PR), PO Box 78 JO. N-5020 Bergen, Norway;

    Uni Centre for Integrated Petroleum Research (C1PR), PO Box 78 JO. N-5020 Bergen, Norway,University Centre in Svalbard, PO Box 156, N-9171 Longyearbyen, Norway;

    Uni Centre for Integrated Petroleum Research (C1PR), PO Box 78 JO. N-5020 Bergen, Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geomodeling; Flow-based upscaling; Flow simulation; Sensitivity analysis;

    机译:地理建模;基于流的放大;流模拟;灵敏度分析;

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