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过冷水成核倾向低密度部分的分析测定。

Analytical Determination of the Nucleation-Prone, Low-Density Fraction of Subcooled Water.

作者信息

Hellmuth Olaf, Feistel Rainer

机构信息

Leibniz Institute for Tropospheric Research (TROPOS), Permoserstraße 15, D-04318 Leipzig, Germany.

Leibniz Institute for Baltic Research (IOW), Seestraße 15, D-18119 Rostock-Warnemünde, Germany.

出版信息

Entropy (Basel). 2020 Aug 25;22(9):933. doi: 10.3390/e22090933.

Abstract

Subcooled water is the primordial matrix for ice embryo formation by homogeneous and heterogeneous nucleation. The knowledge of the specific Gibbs free energy and other thermodynamic quantities of subcooled water is one of the basic prerequisites of the theoretical analysis of ice crystallization in terms of classical nucleation theory. The most advanced equation of state of subcooled water is the IAPWS G12-15 formulation. The determination of the thermodynamic quantities of subcooled water on the basis of this equation of state requires the iterative determination of the fraction of low-density water in the two-state mixture of low-density and high-density subcooled water from a transcendental equation. For applications such as microscopic nucleation simulation models requiring highly frequent calls of the IAPWS G12-15 calculus, a new two-step predictor-corrector method for the approximative determination of the low-density water fraction has been developed. The new solution method allows a sufficiently accurate determination of the specific Gibbs energy and of all other thermodynamic quantities of subcooled water at given pressure and temperature, such as specific volume and mass density, specific entropy, isothermal compressibility, thermal expansion coefficient, specific isobaric and isochoric heat capacities, and speed of sound. The misfit of this new approximate analytical solution against the exact numerical solution was demonstrated to be smaller than or equal to the misprediction of the original IAPWS G12-15 formulation with respect to experimental values.

摘要

过冷水是通过均匀成核和非均匀成核形成冰胚的原始基质。了解过冷水的比吉布斯自由能和其他热力学量是根据经典成核理论对冰结晶进行理论分析的基本前提之一。过冷水最先进的状态方程是IAPWS G12 - 15公式。基于该状态方程确定过冷水的热力学量需要从一个超越方程迭代确定低密度和高密度过冷水平衡二态混合物中低密度水的比例。对于诸如微观成核模拟模型等需要频繁调用IAPWS G12 - 15计算的应用,已经开发了一种用于近似确定低密度水比例的新的两步预测 - 校正方法。这种新的求解方法能够在给定压力和温度下足够精确地确定过冷水的比吉布斯能以及所有其他热力学量,如比容、质量密度、比熵、等温压缩率、热膨胀系数、比定压热容、比定容热容和声速。结果表明,这种新的近似解析解与精确数值解之间的偏差小于或等于原始IAPWS G12 - 15公式相对于实验值的预测偏差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbcc/7597191/88940e6a1a70/entropy-22-00933-g001.jpg

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