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Permeability of porous materials determined from the euler characteristic

机译:由欧拉特性确定的多孔材料的渗透性

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摘要

We study the permeability of quasi-two-dimensional porous structures of randomly placed overlapping monodisperse circular and elliptical grains. Measurements in microfluidic devices and lattice Boltzmann simulations demonstrate that the permeability is determined by the Euler characteristic of the conducting phase. We obtain an expression for the permeability that is independent of the percolation threshold and shows agreement with experimental and simulated data over a wide range of porosities. Our approach suggests that the permeability explicitly depends on the overlapping probability of grains rather than their shape.
机译:我们研究了随机放置的重叠单分散圆形和椭圆形颗粒的准二维多孔结构的渗透性。在微流体装置中的测量和晶格玻尔兹曼模拟表明,导磁率是由导电相的欧拉特性决定的。我们获得了一个与渗透率阈值无关的渗透率表达式,并与孔隙率范围内的实验和模拟数据相吻合。我们的方法表明,渗透率明显取决于晶粒的重叠概率,而不是其形状。

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