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首页> 外文期刊>Transport in Porous Media >Uniqueness of Specific Interfacial Area-Capillary Pressure-Saturation Relationship Under Non-Equilibrium Conditions in Two-Phase Porous Media Flow
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Uniqueness of Specific Interfacial Area-Capillary Pressure-Saturation Relationship Under Non-Equilibrium Conditions in Two-Phase Porous Media Flow

机译:两相多孔介质流非平衡条件下比界面面积-毛细压力-饱和关系的唯一性

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摘要

The capillary pressure-saturation (P~C-S~W) relationship is one of the central constitutive relationships used in two-phase flow simulations. There are two major concerns regarding this relation. These concerns are partially studied in a hypothetical porous medium using a dynamic pore-network model called DYPOSIT, which has been employed and extended for this study: (a) P~C-S~W relationship is measured empirically under equilibrium conditions. It is then used in Darcy-based simulations for all dynamic conditions. This is only valid if there is a guarantee that this relationship is unique for a given flow process (drainage or imbibition) independent of dynamic conditions; (b) It is also known that P~C-S~W relationship is flow process dependent. Depending on drainage and imbibition, different curves can be achieved, which are referred to as "hysteresis". A thermodynamically derived theory (Hassanizadeh and Gray, Water Resour Res 29: 3389-3904,1993a) suggests that, by introducing a new state variable, called the specific interfacial area (a~(nw), defined as the ratio of fluid-fluid interfacial area to the total volume of the domain), it is possible to define a unique relation between capillary pressure, saturation, and interfacial area. This study investigates these two aspects of capillary pressure-saturation relationship using a dynamic pore-network model. The simulation results imply that P~C-S~W relation not only depends on flow process (drainage and imbibition) but also on dynamic conditions for a given flow process. Moreover, this study attempts to obtain the first preliminary insights into the global functionality of capillary pressure-saturation-interfacial area relationship under equilibrium and non-equilibrium conditions and the uniqueness of P~C-S~W-a~(nw) relationship.
机译:毛细管压力-饱和度(P〜C-S〜W)关系是两相流模拟中使用的中心本构关系之一。有关此关系有两个主要问题。这些问题在一个假设的多孔介质中使用称为DYPOSIT的动态孔网模型进行了部分研究,该模型已被采用并扩展到本研究中:(a)在平衡条件下凭经验测量P〜C-S〜W关系。然后将其用于所有动态条件的基于Darcy的仿真中。仅在可以保证这种关系对于给定的流动过程(排水或吸收)独立于动态条件而唯一的情况下才有效; (b)众所周知,P〜C-S〜W关系与流程有关。取决于排水和吸收,可以获得不同的曲线,这被称为“滞后”。热力学推论(Hassanizadeh and Gray,Water Resour Res 29:3389-3904,1993a)提出,通过引入一个新的状态变量,称为比界面面积(a〜(nw),定义为流体与流体的比值界面面积与区域总体积之间的关系),可以定义毛细管压力,饱和度和界面面积之间的唯一关系。本研究使用动态孔网络模型研究了毛细管压力-饱和度关系的这两个方面。仿真结果表明,P〜C-S〜W关系不仅取决于流动过程(排水和吸收),而且还取决于给定流动过程的动态条件。此外,本研究试图初步了解平衡和非平衡条件下毛细管压力-饱和度-界面面积关系的整体功能以及P〜C-S〜W-a〜(nw)关系的唯一性。

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