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DRAFT: MODELING TWO-PHASE FLOW IN POROUS MEDIA INCLUDING FLUID-FLUID INTERFACIAL AREA

机译:草案:在多孔介质中建模两相流,包括流体流体界面区域

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We present a new numerical model for macro-scale two-phase flow in porous media which is based on a physically consistent theory of multi-phase flow. The standard approach for modeling the flow of two fluid phases in a porous medium consists of a continuity equation for each phase, an extended form of Darcy 's law as well as constitutive relationships for relative permeability and capillary pressure. This approach is known to have a number of important shortcomings and, in particular, it does not account for the presence and role of fluid -fluid interfaces. An alternative is to use an extended model which is founded on thermodynamic principles and is physically consistent. In addition to the standard equations, the model uses a balance equation for specific interfacial area. The constitutive relationship for capillary pressure involves not only saturation, but also specific interfacial area. We show how parameters can be obtained for the alternative model using experimental data from a new kind of flow cell and present results of a numerical modeling study.
机译:我们在多孔介质中展示了一种新的宏观两相流流量,其基于物理上一致的多相流理论。用于建模多孔介质中的两个流体相流的标准方法包括每个相的连续性方程,这是一种达西氏律法的延伸形式,以及用于相对渗透性和毛细管压力的本构关系。已知这种方法具有许多重要的缺点,特别是它不考虑流体 - 氟界面的存在和作用。另一种方法是使用在热力学原理上创立的扩展模型,并且物理上是一致的。除了标准方程之外,该模型还使用特定界面区域的平衡方程。毛细管压力的本构关系涉及饱和,而且涉及特定的界面区域。我们展示如何使用来自新种类的流动单元和数值建模研究的实验数据来获得参数的替代模型。

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