Galamba N, de Castro C A Nieto, Ely James F
Departamento de Química e Bioquímica e Centro de Ciências Moleculares e Materiais, Faculdade de Ciências da Universidade de Lisboa, 1749-016 Lisboa, Portugal.
J Chem Phys. 2005 Jun 8;122(22):224501. doi: 10.1063/1.1924706.
The shear viscosity of molten NaCl and KCl was calculated through equilibrium (EMD) and nonequilibrium molecular-dynamics (NEMD) simulations in the canonical (N,V,T) ensemble. Two rigid-ion potentials were investigated, namely, the Born-Mayer-Huggins-Tosi-Fumi potential and the Michielsen-Woerlee-Graaf-Ketelaar potential with the parameters proposed by Ladd. The NEMD simulations were performed using the SLLOD equations of motion [D. J. Evans and G. P. Morriss, Phys. Rev. A 30, 1528 (1984)] with a Gaussian isokinetic thermostat and the results are compared with those obtained from Green-Kubo EMD (N,V,T) simulations and experimental shear viscosity data. The NEMD zero strain rate shear viscosity, eta(0), was obtained by fitting a simplified Carreau-type equation and by application of mode-coupling theory, i.e., a eta-gamma(1/2) linear relationship. The values obtained from the first method are found to be significantly lower than those predicted by the second. The agreement between the EMD and NEMD results with experimental data is satisfactory for the two potentials investigated. The ion-ion radial distribution functions obtained with the two rigid-ion potentials for both molten salts are discussed in terms of the differences between the two models.
通过在正则(N,V,T)系综中进行平衡分子动力学(EMD)和非平衡分子动力学(NEMD)模拟,计算了熔融NaCl和KCl的剪切粘度。研究了两种刚性离子势,即Born-Mayer-Huggins-Tosi-Fumi势和由Ladd提出参数的Michielsen-Woerlee-Graaf-Ketelaar势。使用带有高斯等动力学恒温器的SLLOD运动方程[D. J. Evans和G. P. Morriss,《物理评论A》30,1528(1984)]进行NEMD模拟,并将结果与从格林-库博EMD(N,V,T)模拟和实验剪切粘度数据获得的结果进行比较。通过拟合简化的Carreau型方程并应用模式耦合理论,即η-γ^(1/2)线性关系,获得了NEMD零应变率剪切粘度η(0)。发现从第一种方法获得的值明显低于第二种方法预测的值。对于所研究的两种势,EMD和NEMD结果与实验数据之间的一致性令人满意。根据两种模型之间的差异,讨论了用两种刚性离子势获得的两种熔盐的离子-离子径向分布函数。