首页> 外文OA文献 >Development of a numerical workflow based on μ-CT imaging for the determination of capillary pressure-saturation-specific interfacial area relationship in 2-phase flow pore-scale porous-media systems: A case study on Heletz sandstone
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Development of a numerical workflow based on μ-CT imaging for the determination of capillary pressure-saturation-specific interfacial area relationship in 2-phase flow pore-scale porous-media systems: A case study on Heletz sandstone

机译:基于μ-CT成像的数值工作流程的开发,用于确定两相流孔尺度多孔介质系统中的毛细管压力-饱和度-特定界面面积关系:以赫莱茨砂岩为例

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摘要

In this case study, we present the implementation of a finite element method (FEM)-based numerical pore-scale model that is able to track and quantify the propagating fluid–fluid interfacial area on highly complex micro-computed tomography (μ-CT)-obtained geometries. Special focus is drawn to the relationship between reservoir-specific capillary pressure (pc), wetting phase saturation (Sw) and interfacial area (awn). The basis of this approach is high-resolution μ-CT images representing the geometrical characteristics of a georeservoir sample. The successfully validated 2-phase flow model is based on the Navier–Stokes equations, including the surface tension force, in order to consider capillary effects for the computation of flow and the phase-field method for the emulation of a sharp fluid–fluid interface.In combination with specialized software packages, a complex high-resolution modelling domain can be obtained. A numerical workflow based on representative elementary volume (REV)-scale pore-size distributions is introduced. This workflow aims at the successive modification of model and model set-up for simulating, such as a type of 2-phase problem on asymmetric μ-CT-based model domains. The geometrical complexity is gradually increased, starting from idealized pore geometries until complex μ-CT-based pore network domains, whereas all domains represent geostatistics of the REV-scale core sample pore-size distribution. Finally, the model can be applied to a complex μ-CT-based model domain and the pc–Sw–awn relationship can be computed.
机译:在本案例研究中,我们介绍了基于有限元方法(FEM)的数值孔径模型的实现,该模型能够在高度复杂的微计算机断层扫描(μ-CT)上跟踪和量化传播的流体-流体界面面积-获得的几何形状。特别关注的是储层比毛细管压力(pc),润湿相饱和度(Sw)和界面面积(awn)之间的关系。这种方法的基础是代表地质储层样品几何特征的高分辨率μ-CT图像。成功验证的两相流模型基于Navier–Stokes方程,包括表面张力,以便考虑毛细管效应来计算流量,并考虑相场方法来模拟尖锐的流体-流体界面与专用软件包结合使用,可以获得复杂的高分辨率建模域。介绍了基于代表性基本体积(REV)尺度孔径分布的数值工作流程。此工作流程旨在对模型和模型设置进行连续修改以进行仿真,例如基于非对称μ-CT的模型域上的一种两相问题。从理想的孔几何形状直到复杂的基于μ-CT的孔网络域,几何复杂度逐渐增加,而所有域都代表REV尺度岩心样品孔径分布的地统计学。最后,该模型可以应用于基于μ-CT的复杂模型域,并且可以计算pc-Sw-awn关系。

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