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Analytical modeling of non-Fickian wave-diffusion of gas in heterogeneous media

机译:气体在非均质介质中非费克波扩散的解析模型

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An isothermal transient-state non-Fickian diffusion model is developed and analytically solved for description of gas dissolution in locally heterogeneous media suddenly exposed to a high pressure gas. The full-, short-, and long-time analytical solutions are used to establish the significance of the non-Fickian gas dissolution in heterogeneous media compared to the Fickian diffusion assumption. Parametric studies are carried out by means of the special analytical-solutions obtained for gas transport in the semi-infinite and finite-thickness heterogeneous media involving a delay time. The profiles of concentration and diffusion flux obtained for the non-Fickian wave-diffusion case are compared with the Fickian pure-diffusion case. The initial propagation of a right-running wave and its reflection from the wall are illustrated for the concentrations and diffusion fluxes. The small-time behavior is shown to be inherently wave-like and the discontinuity wave front propagates into the medium with the speed decreasing with time. For small times, the differences between the wave- and pure-diffusion cases are found to be significant depending on the magnitude of the delay time. For sufficiently large times, the wave behavior dies out and the wave solutions approach the equilibrium pure-diffusion solutions, except very near the decaying wave front. The formulations presented in this paper are of practical importance because they can be instrumental in determination of the diffusivity, interface surface mass-transfer coefficient, and rate of dissolution of gases in heterogeneous medium. A parameter estimation method is also proposed and elaborated for estimation of the diffusion and interface surface mass-transfer coefficients from measured pressure decay data.
机译:建立了等温瞬态非菲克扩散模型,并对其进行了解析求解,以描述气体在突然暴露于高压气体的局部非均质介质中的溶解情况。与Fickian扩散假设相比,完整,短期和长期的分析解决方案可用于确定非Fickian气体在异质介质中溶解的重要性。通过在半无限和有限厚度的非均质介质中进行气体传输而获得的特殊分析解决方案,进行了参数化研究,涉及延迟时间。将非菲克波扩散情况下获得的浓度和扩散通量曲线与菲克纯扩散情况进行了比较。对于浓度和扩散通量,说明了右行波的初始传播及其从壁的反射。短时行为显示为固有波状,并且不连续波前传播到介质中,速度随时间降低。对于较小的时间,根据延迟时间的大小,发现波和纯扩散情况之间的差异很大。在足够大的时间内,除了非常靠近衰减的波阵面之外,波的行为都会消失,并且波解会接近平衡的纯扩散解。本文中介绍的配方具有实际意义,因为它们可以帮助确定扩散系数,界面表面传质系数以及气体在异质介质中的溶解速率。还提出并阐述了一种参数估计方法,用于根据测得的压力衰减数据估计扩散和界面表面传质系数。

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