Ghimire Sunil, Adhikari Narayan Prasad
Central Department of Physics, Tribhuvan University, Kathmandu, Nepal.
J Mol Model. 2017 Mar;23(3):94. doi: 10.1007/s00894-017-3261-8. Epub 2017 Feb 28.
Molecular dynamics simulation of argon, krypton, and their binary mixtures were performed at different temperatures and constant pressure (P = 1.013 bar) using GROMACS - Groningen Machine for Chemical Simulations. The gases are modeled by Lennard-Jones pair potential, with parameters taken from the literature. The study of radial distribution functions (RDFs) shows a single peak which indicates that there is no packing effect in gaseous state for argon, krypton, and their binary mixtures. The self-diffusion coefficients of argon and krypton is determined by using mean-square displacement(MSD) method and the mutual diffusion coefficients of binary mixtures are determined using Darken's relation. The values of simulated diffusion coefficients are compared with their corresponding theoretical values, numerical estimation, and experimental data. A good agreement between these sets of data is found. The diffusion coefficients obey Arrhenius behavior to a good extent for both pure components and binary mixtures. The values of simulated diffusion coefficient are used to estimate viscosities and thermal conductivities which agree with theoretical values, numerical estimation, and experimental data within 10 %. These results support that the LJ potential is sufficient for description of molecular interactions in argon and krypton.
使用GROMACS(格罗宁根化学模拟机器)在不同温度和恒定压力(P = 1.013巴)下对氩气、氪气及其二元混合物进行了分子动力学模拟。这些气体由 Lennard-Jones 对势建模,参数取自文献。径向分布函数(RDFs)的研究显示出一个单峰,这表明氩气、氪气及其二元混合物在气态下不存在堆积效应。氩气和氪气的自扩散系数通过均方位移(MSD)方法确定,二元混合物的互扩散系数使用 Darken 关系式确定。将模拟扩散系数的值与其相应的理论值、数值估计和实验数据进行了比较。发现这些数据集之间有很好的一致性。对于纯组分和二元混合物,扩散系数在很大程度上遵循阿伦尼乌斯行为。模拟扩散系数的值用于估计粘度和热导率,其与理论值、数值估计和实验数据的一致性在10%以内。这些结果支持LJ势足以描述氩气和氪气中的分子相互作用。