磁导率
多孔性
多孔介质
机械
基质(化学分析)
膜
材料科学
流体力学
达西定律
达西-韦斯巴赫方程
强迫(数学)
热力学
物理
相对渗透率
作者
Albert Dombret,Adrien Sutter,Baptiste Coquinot,Nikita Kavokine,Benoit Coasne,Lydéric Bocquet
摘要
In this paper we examine how porosity fluctuations affect the hydrodynamic permeability of a porous matrix or membrane. We introduce a fluctuating Darcy model, which couples the Navier-Stokes equation to the space- and time-dependent porosity fluctuations via a Darcy friction term. Using a perturbative approach, a Dyson equation for hydrodynamic fluctuations is derived and solved to express the permeability in terms of the matrix fluctuation spectrum. Surprisingly, the model reveals strong modifications of the fluid permeability in fluctuating matrices compared to static ones. Applications to various matrix excitation models, the breathing matrix, phonons, and active forcing, highlight the significant influence of matrix fluctuations on fluid transport, offering insights for optimizing membrane design for separation applications.
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