论文标题
N-甲状腺烷的热物理特性:分子动力学和实验研究
Thermophysical properties of n-hexadecane: Combined Molecular Dynamics and experimental investigations
论文作者
论文摘要
研究相变材料(PCM)的特性是一个重要的问题,因为它们在供暖系统和热调节设备中的广泛使用。此类系统效率的提高应基于对PCMS热和流变特性的微观机制的更好了解。这可以通过使用上述量的分子模拟及其与宏观研究的联系来实现。在这项工作中,我们研究了使用分子动力学(MD)的不同温度机制的$ n $ hexAdecane的热物理特性,并进行了几项实验测量。特别是,我们专注于评估各种流变和热性能,例如导热率,$κ$,粘度,$η$,扩散系数,$ d $和热能$ C_P $和$ C_V $。特别注意将模拟结果与实验性结果进行比较。
Investigating properties of phase change materials (PCMs) is an important issue due to their extensive use in heat storage systems and thermal regulation devices. Improvement of the efficiency of such systems should be based on a better knowledge of the microscopic mechanisms governing the thermal and rheological characteristics of PCMs. This may be accomplished by the use of molecular simulations of the aforementioned quantities and their linkage with macroscale investigations. In this work, we studied thermophysical properties of $n$-hexadecane for different temperatures regimes using molecular dynamics (MD) and carry out several experimental measurements. Particularly, we focused on the evaluation of various rheological and thermal properties such as thermal conductivity, $κ$, viscosity, $η$, diffusion coefficient, $D$, and heat capacities $C_p$ and $C_v$. Special attention was paid to the comparison of the results of simulations with experimental ones.