论文标题

液态气相变的流体临界行为:微观描述的分析方法

Fluid critical behavior at liquid-gas phase transition: Analytic method for microscopic description

论文作者

Pylyuk, I. V.

论文摘要

在细胞流体模型框架内研究了液态气临界点附近流体的行为。在集体变量方法中,开发了低温区域(T <tc)中用于得出细胞流体模型状态方程(T <tc)中的分析方法。大规范合奏中的数学描述通过具有傅立叶变换的摩尔斯相互作用潜力的示例来说明。所提出的方法的一个特定特征在于有可能使用流体(相互作用电位的参数)来计算宏观数量(压力和其他热力学数量)的可能性,而不涉及硬球参考系统。临界点附近模型状态的宏伟分区函数,热力学势和方程被得出了阶参数波动的非高斯(四重奏)分布。提出和解决了连接密度和化学电位的非线性方程。对于相对温度的各种值,绘制了密度对化学电位的依赖性的图。除了钠的估计值外,还获得了钾的关键点参数的数值估计。液态碱金属(钠和钾)计算出的临界点参数符合实验数据。绘制了钠的共存曲线,并将其与TC附近附近的其他作者数据进行了比较,在该附近,理论和实验研究很难进行。讨论了获得的结果与较早发布的TC结果之间的差异。

The behavior of fluids in the vicinity of the liquid-gas critical point is studied within the cell fluid model framework. The analytic method for deriving the equation of state of a cell fluid model in the low-temperature region (T<Tc) is developed using the renormalization group transformation within the collective variables approach. Mathematical description within the grand canonical ensemble is illustrated by an example of the Morse interaction potential possessing the Fourier transform. A specific feature of the proposed method lies in the possibility to use exclusively microscopic characteristics of a fluid (parameters of the interaction potential) for calculating macroscopic quantities (pressure and other thermodynamic quantities) without involving the hard-spheres reference system. The grand partition function, thermodynamic potential, and equation of state of the model near the critical point are derived taking into account the non-Gaussian (quartic) distribution of order parameter fluctuations. A nonlinear equation, which links the density and the chemical potential, is presented and solved. Graphs of the dependence of the density on the chemical potential are plotted for various values of the relative temperature. The numerical estimates of the critical-point parameters for potassium, obtained in addition to the estimates for sodium, are given. The calculated critical-point parameters for liquid alkali metals (sodium and potassium) are in accord with experimental data. The coexistence curve for sodium is plotted and compared with other authors' data in the immediate vicinity of Tc, where theoretical and experimental researches are difficult to carry out. The differences between the obtained results and the earlier published results for T>Tc are discussed.

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