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首页> 外文期刊>Oceanographic Literature Review >Stochastic 3D Navier-Stokes Flow in Self-Affine Fracture Geometries Controlled by Anisotropy and Channeling
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Stochastic 3D Navier-Stokes Flow in Self-Affine Fracture Geometries Controlled by Anisotropy and Channeling

机译:随机3D Navier-Stokes在由各向异性和渠道控制的自助性骨折几何形状中流动

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摘要

This study presents a probabilistic analysis of 3D Navier-Stokes (NS) fluid flow through 30 randomly generated sheared fractures with equal roughness properties (Hurst exponent = 0.8). The results of numerous 3D NS realizations are compared with the highly simplified local cubic law (LCL) solutions regarding flow orientations and regimes. The transition between linear and nonlinear flow conditions cannot be described with a generally valid critical Reynolds number (Formula presented.), but rather depends on the individual fracture's void geometry. Over 10% reduction in flow is observed for increased global Re (> 100) due to the increasing impact of nonlinear conditions. Furthermore, the fracture geometry promotes flow anisotropy and the formation of channels. Flow perpendicular to the shearing leads to increased channeling and fluid flow (~40% higher) compared to flow parallel to the shearing. In the latter case, dispersed flow and irregular flow paths cause a reduction of LCL validity.
机译:该研究介绍了3D Navier-Stokes(NS)流体通过30随机产生的剪切裂缝具有相等粗糙度特性的概率分析(Hurst Indonent = 0.8)。将许多3D NS实现的结果与关于流动取向和制度的高度简化的局部立方法(LCL)解决方案进行了比较。线性和非线性流动条件之间的过渡不能用大致有效的关键雷诺数(所呈现的公式。),而是取决于各个骨折的空隙几何形状。由于非线性条件的影响越来越大,对于增加的全球RE(> 100),观察到超过10%的流量。此外,裂缝几何形状促进流动各向异性和通道的形成。与平行于剪切的流量相比,垂直于剪切垂直于剪切引线的流动和流体流动(〜40%)。在后一种情况下,分散的流动和不规则流动路径导致LCL有效性降低。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1408-1408|共1页
  • 作者单位

    Geothermal Energy and Reservoir Technology Institute of Applied Geosciences Karlsruhe Institute of Technology Karlsruhe Germany;

    Geothermal Energy and Reservoir Technology Institute of Applied Geosciences Karlsruhe Institute of Technology Karlsruhe Germany;

    Geothermal Energy and Reservoir Technology Institute of Applied Geosciences Karlsruhe Institute of Technology Karlsruhe Germany;

    Geothermal Energy and Reservoir Technology Institute of Applied Geosciences Karlsruhe Institute of Technology Karlsruhe Germany;

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