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预测 Lennard-Jones 流体构型绝热线及其输运系数的模型。

Models to predict configurational adiabats of Lennard-Jones fluids and their transport coefficients.

作者信息

Heyes D M, Dini D, Pieprzyk S, Brańka A C, Costigliola L

机构信息

Department of Mechanical Engineering, Imperial College London, Exhibition Road, South Kensington, London SW7 2AZ, United Kingdom.

Institute of Molecular Physics, Polish Academy of Sciences, M. Smoluchowskiego 17, 60-179 Poznań, Poland.

出版信息

J Chem Phys. 2024 Aug 28;161(8). doi: 10.1063/5.0225650.

Abstract

A comparison is made between three simple approximate formulas for the configurational adiabat (i.e., constant excess entropy, sex) lines in a Lennard-Jones (LJ) fluid, one of which is an analytic formula based on a harmonic approximation, which was derived by Heyes et al. [J. Chem. Phys. 159, 224504 (2023)] (analytic isomorph line, AIL). Another is where the density is normalized by the freezing density at that temperature (freezing isomorph line, FIL). It is found that the AIL formula and the average of the freezing density and the melting density ("FMIL") are configurational adiabats at all densities essentially down to the liquid-vapor binodal. The FIL approximation departs from a configurational adiabat in the vicinity of the liquid-vapor binodal close to the freezing line. The self-diffusion coefficient, D, shear viscosity, ηs, and thermal conductivity, λ, in macroscopic reduced units are essentially constant along the AIL and FMIL at all fluid densities and temperatures, but departures from this trend are found along the FIL at high liquid state densities near the liquid-vapor binodal. This supports growing evidence that for simple model systems with no or few internal degrees of freedom, isodynes are lines of constant excess entropy. It is shown that for the LJ fluid, ηs and D can be predicted accurately by an essentially analytic procedure from the high temperature limiting inverse power fluid values (apart from at very low densities), and this is demonstrated quite well also for the experimental argon viscosity.

摘要

对 Lennard-Jones(LJ)流体中构型绝热线(即恒定过量熵,sex)的三条简单近似公式进行了比较。其中一条是基于谐波近似的解析公式,由海耶斯等人 [《化学物理杂志》159, 224504 (2023)] 推导得出(解析同构线,AIL)。另一条是在该温度下密度用冻结密度归一化(冻结同构线,FIL)。结果发现,AIL 公式以及冻结密度与熔化密度的平均值(“FMIL”)在基本上直至液 - 气双节线的所有密度下都是构型绝热线。FIL 近似在靠近冻结线的液 - 气双节线附近偏离构型绝热线。宏观约化单位下的自扩散系数 D、剪切粘度 ηs 和热导率 λ 在所有流体密度和温度下沿 AIL 和 FMIL 基本保持恒定,但在靠近液 - 气双节线的高液态密度下沿 FIL 发现有偏离此趋势的情况。这支持了越来越多的证据表明,对于没有或只有很少内部自由度的简单模型系统,等熵线是恒定过量熵的线。结果表明,对于 LJ 流体,ηs 和 D 可以通过一个基本上解析的程序从高温极限逆幂流体值(除了在非常低的密度下)准确预测,并且对于实验氩气粘度也能很好地证明这一点。

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