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Diffusion controlled reaction rate,survival probability,and molecular trajectory characteristics in the bulk,transition and Knudsen regime

机译:本体,过渡和努德森状态下扩散控制的反应速率,存活概率和分子轨迹特征

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摘要

Random walk simulation results are presented for the diffusion controlled reaction rate coefficient,molecular survival probability,average track length and relative collision frequency in the bulk,transition and Knudsen diffusion regime,in porous media formed by randomly oriented cylindrical fibers.The survival probability and mean survival distance are found to increase with the porosity in all diffusion regimes.The diffusion controlled reaction rate coefficient attains higher values at lower porosities,obeying an upper bound of the literature and approaching its value in the bulk regime.The values computed for all three parameters in the transition regime depend strongly on the Knudsen number,whereas in the Knudsen regime they are in line with analytical predictions based on the chord length distribution of the fiber structures.A harmonic average approximation based on Bosanquet's equation for the effective diffusivities is found to link successfully the values of the diffusion controlled reaction rate coefficient in the three diffusion regimes.The simulation results for the average molecular track length and relative collision frequency deviate in the biggest part of the transition regime from earlier analytical and numerical results obtained from long diffusion time random walks,in agreement with an analysis centered on the basic differences of molecular trajectories in diffusion controlled reaction systems from those involving molecular reflection from the pore surface.
机译:给出了在随机取向的圆柱状纤维形成的多孔介质中,本体,过渡和克努森扩散过程中的扩散控制的反应速率系数,分子存活概率,平均轨道长度和相对碰撞频率的随机游走模拟结果。存活概率和均值在所有扩散条件下,生存距离均随孔隙度的增加而增加。在较低孔隙度下,扩散控制的反应速率系数达到较高的值,遵守文献的上限,并在整体状态下接近其值。所有三个参数的计算值在过渡态中,Knudsen数强烈依赖于Knudsen数,而在Knudsen中,它们与基于纤维结构弦长分布的分析预测相符。基于Bosanquet方程的有效扩散率谐波均值近似关系成功地将扩散控制的值在三种扩散方式下,反应速率系数均较高。平均分子径迹长度和相对碰撞频率的模拟结果在过渡方式的最大部分与较长扩散时间随机游走所获得的较早的分析和数值结果不同,与分析的重点是扩散控制反应系统中分子轨迹与涉及孔表面分子反射的分子轨迹的基本差异。

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