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首页> 外文期刊>The Journal of Chemical Physics >Asymptotic solution of the diffusion equation in slender impermeable tubes of revolution. I. The leading-term approximation
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Asymptotic solution of the diffusion equation in slender impermeable tubes of revolution. I. The leading-term approximation

机译:细长的不可渗透旋转管中扩散方程的渐近解。一,前期近似

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The anisotropic 3D equation describing the pointlike particles diffusion in slender impermeable tubes of revolution with cross section smoothly depending on the longitudinal coordinate is the object of our study. We use singular perturbations approach to find the rigorous asymptotic expression for the local particles concentration as an expansion in the ratio of the characteristic transversal and longitudinal diffusion relaxation times. The corresponding leading-term approximation is a generalization of well-known Fick-Jacobs approximation. This result allowed us to delineate the conditions on temporal and spatial scales under which the Fick-Jacobs approximation is valid. A striking analogy between solution of our problem and the method of inner-outer expansions for low Knudsen numbers gas kinetic theory is established. With the aid of this analogy we clarify the physical and mathematical meaning of the obtained results. (C) 2014 AIP Publishing LLC.
机译:各向异性的3D方程描述了点状粒子在细长的不可渗透的旋转管中的扩散,其横截面取决于纵向坐标,这是我们研究的目标。我们使用奇异摄动法来找到局部粒子浓度的严格渐近表达式,作为特征横向和纵向扩散弛豫时间之比的扩展。相应的前导项近似是众所周知的Fick-Jacobs近似的推广。该结果使我们能够在时空尺度上描述Fick-Jacobs逼近有效的条件。建立了我们的问题的解决方案与低Knudsen数气体动力学理论的内外扩展方法之间的惊人比喻。借助这种类比,我们阐明了所得结果的物理和数学含义。 (C)2014 AIP Publishing LLC。

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