Diffusion of finite-sized Brownian particles in porous media
نویسندگان
چکیده
The effective diffusion coefficient D, for porous media composed of identical obstacles of radius A in which the diffusing particles have finite radius PR (fl>O) is determined by an efficient Brownian motion simulation technique. This is accomplished by first computing D, for diffusion of “point” Brownian particles in a certain system of interpenetrable spherical obstacles and then employing an isomorphism between D, for this interpenetrable sphere system and De for the system of interest, i.e., the one in which the Brownian particles have radius BR. [S. Torquato, J. Chem. Phys. 95,2838 ( 199 1) 1. The diffusion coefficient is computed for the cases /3 = l/9 and ~!3 = l/4 for a wide range of porosities and compared to previous calculations for point Brownian particles (B = 0). The effect of increasing the size of the Brownian particle is to hinder the diffusion, especially at low porosities. A simple scaling relation enables one to compute the effective diffusion coefficient D, for tinite 0 given the result of D, for p = 0.
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