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Analysis of Flow Characteristics in Porous Media with Heterogeneity at Microscale and Macroscale

机译:多孔介质流动特性分析微致密性和Macroscale的异质性

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Hydrodynamic or oilfield scale models are needed to predict long-term the production process, to design and optimise well placement and evaluate the outcomes of different enhanced recovery practises. These models operate using continuum medium approximations and upscaled effective porous media properties such as permeability, relative permeability and capillary curves and are conventionally based on (multiphase generalization of) Darcy and continuity equations. In this work we explored the difference between flow patterns on the Darcy scale depending on how we parameterized the model–using scalar permeability values, or based on pore-scale simulations on 3D pore geometries of real rock samples. In the latter case two permeabilities were utilized–conventional directional permeability (in three directions) and full permeability tensor. Our results strongly support the idea that full tensors are needed to accurately represent fluxes at Darcy scale then upscaling from core-scale measurements or simulations, or even if using geologic/ geostatistical model (with spatial heterogeneous distribution of flow properties). More specifically, our upscaled Darcy scale model parameterized using hypothetical scalar or pore-scale simulated permeabilities revealed: even a simple scalar permeability field, if heterogeneous, produces significant off-diagonal terms in tensorial permeability results; using tensoral permeabilities when upscaling from the core-scale results in significant difference in upscaled (tensorial) permeabilities compared to conventional directional simulation framework.
机译:需要流体动力学或油田规模模型来预测长期生产过程,设计和优化井放置并评估不同增强恢复实践的结果。这些模型使用连续介质近似和升高的有效多孔介质特性操作,例如渗透性,相对渗透性和毛细管曲线,并且通常基于(多相广义)达西和连续性方程。在这项工作中,我们探讨了达西规模上的流模式之间的区别,具体取决于我们如何参数化模型 - 使用标量磁导率值,或者基于真实岩石样本的3D孔几何形状的孔隙尺度模拟。在后一种情况下,两个渗透率 - 常规定向渗透率(三个方向)和充分的渗透性张量。我们的结果强烈支持了需要完全张量的想法,以便在达西秤上准确地代表达西标度的助熔剂,然后从核心尺度测量或模拟上升,或者即使使用地质/地质模型(流动性的空间异质分布)。更具体地说,我们使用假设标量或孔径模拟渗透性参数化的Upcaled Darcy Scale模型显示:即使是简单的标量渗透性场,如果异构,则在姿态渗透率中产生显着的偏差术语;与传统定向仿真框架相比,在从核心尺度上升导致核心尺度上升导致升高(姿态)渗透率的显着差异。

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