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首页> 外文期刊>Transport in Porous Media >The Effective Permeability of Cracks and Interfaces in Porous Media
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The Effective Permeability of Cracks and Interfaces in Porous Media

机译:多孔介质中裂纹和界面的有效渗透率

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摘要

The presence of interfaces in fluid/solid biphasic media is known to strongly influence their behavior both in terms of solid deformation and fluids flow. Mathematical models have traditionally represented these interfaces as lines of no-thickness and whose behavior is given in terms of effective permeabilities whose physical meaning is often disconnected to the microscopic nature of the interface. This article aims to reconcile macroscopic and microscopic interface representations by investigating how the nature of microscopic flows and pressures in the interface can be used to explain its macroscopic behavior. By invoking a proper thickness average operation, we derive an closed form expression that relates the effective interfaces permeabilities to its microscopic properties. In particular, we find that the effective interface permeabilities are strongly influenced by three factors: the ratio of bulk and interface permeabilities, the fluid viscosity, and the physical thickness of the interface.
机译:已知流体/固体双相介质中界面的存在会在固体变形和流体流动方面强烈影响其行为。数学模型传统上将这些界面表示为无厚度线,并且其行为是根据有效渗透率给出的,有效渗透率的物理含义通常与界面的微观性质无关。本文旨在通过研究如何使用微观流动和界面中的压力的​​性质来解释其宏观行为,来调和宏观和微观的界面表示。通过调用适当的厚度平均操作,我们得出一个闭合形式的表达式,该表达式将有效的界面渗透率与其微观特性相关联。特别是,我们发现有效的界面渗透率受以下三个因素的强烈影响:本体和界面渗透率的比率,流体粘度和界面的物理厚度。

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