癸烷
十六烷
剪切粘度
热力学
分子动力学
粘度
化学
力场(虚构)
剪切(地质)
体积粘度
材料科学
计算化学
物理
有机化学
量子力学
复合材料
作者
Rajdeep Singh Payal,Sundaram Balasubramanian,Indranil Rudra,Kunj Tandon,Ingo Mahlke,David Doyle,Roger Cracknell
标识
DOI:10.1080/08927022.2012.702423
摘要
Atomistic molecular dynamics simulations were carried out at equilibrium to calculate the shear viscosity of n-decane and n-hexadecane under ambient and high temperature–high pressure conditions. Two force fields, one using a computationally efficient united-atom (TrAPPE-UA) approach and another an all-atom (AA) approach (Tobias, Tu and Klein), were employed. Quantitative agreement with experimental data is obtained with the AA force field, whereas the UA model predicts the viscosity within 20–30% of the experiment. The intra- and inter-molecular structure of the fluid obtained from these two models is similar, pointing to the role of differences in their dynamical characteristics to the observed difference in the calculated viscosities.
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