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Scaling behavior of diffusion and reaction processes in percolating porous media - art. no. 061406

机译:渗透多孔介质中扩散和反应过程的缩放行为-艺术。没有。 061406

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摘要

We investigate the diffusion-reaction behavior of two-dimensional pore networks at the critical percolation point. Our results indicate the existence of three distinct regimes of reactivity, determined by parameter xiequivalent toD/(Kl(2)), where D is the molecular diffusivity of the reagent, K is its chemical reaction coefficient, and l is the length scale of the pore. First, when the diffusion transport is strongly limited by chemical reaction (i.e., DK), the flux of reagent reaches a saturation limit Phi(sat) that scales with the system size as Phi(sat)similar toL(alpha), with an exponent alphaapproximate to1.89, corresponding to the fractal dimension of the sample-spanning cluster. We then show that the variation of flux Phi calculated for different network sizes at the second and third regimes can be adequately described in terms of the scaling relation, Phisimilar toL(alpha)f(xi/L-z), where the crossover exponent zapproximate to2.69 is consistent with the predicted scaling law alpha=2betaz. [References: 22]
机译:我们研究了二维孔网络在临界渗流点的扩散反应行为。我们的结果表明存在三种不同的反应体系,由参数D /(Kl(2))等效确定,其中D为试剂的分子扩散系数,K为试剂的化学反应系数,l为试剂的长度尺度毛孔。首先,当扩散传输受到化学反应的强烈限制(即D K)的情况下,试剂的通量达到饱和极限Phi(sat),其饱和度随系统大小按Phi(sat)缩放,类似于L(α),其α指数约为1.89 ,对应于跨样本群集的分形维数。然后,我们表明,在第二和第三种情况下针对不同网络规模计算的通量Phi的变化可以根据比例关系PhiliketoLαf(xi / Lz)进行充分描述,其中交叉指数z近似于2。 69与预测的缩放定律alpha = 2betaz一致。 [参考:22]

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