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EFFECT OF CHEMICAL REACTION ON DIFFUSION OF DILUTED GAS - SIMULATIONS BY MEANS OF TWO MONTE CARLO METHODS

机译:化学反应对稀释气体扩散的影响-两种蒙特卡罗方法的模拟。

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Two Monte Carlo methods are used to simulate a dynamics of molecules of a foreign gas A, highly diluted in a carrier gas C. Diffusion in the presence of bimolecular reaction A + C --> products is studied. Nonequilibrium corrections to the reaction rate constant and diffusion coefficient are calculated for a wide range of molecular mass ratio m(A)/m(C) and activation energies of the reaction. Some differences between simulation results of the two methods are observed. The deviation of the velocity distribution from the Maxwellian form is quantified by means of the fourth order cumulants. The nonequilibrium effects are most significant in the Lorentz range, that is for m(A)/m(C). The simulation results prove that the theoretical predictions based on a perturbative solution of the Boltzmann equation are valid for not too small values of m(A)/m(C), but are not correct in the Lorentz range. (C) 1997 American Institute of Physics. [References: 29]
机译:两种蒙特卡罗方法用于模拟在载气C中高度稀释的外来气体A的分子动力学。研究了在双分子反应A + C->产物存在下的扩散。对于大范围的分子质量比m(A)/ m(C)和反应的活化能,对反应速率常数和扩散系数进行了非平衡校正。观察到两种方法的仿真结果之间存在一些差异。速度分布与麦克斯韦形式的偏差通过四阶累积量来量化。在Lorentz范围内,即m(A)/ m(C),非平衡效应最为明显。仿真结果证明,基于Boltzmann方程摄动解的理论预测在m(A)/ m(C)值不太小的情况下有效,但在Lorentz范围内是不正确的。 (C)1997美国物理研究所。 [参考:29]

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