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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Curvature on the Transfer Coefficients for Evaporation and Condensation of Lennard-Jones Fluid from Square-Gradient Theory and Nonequilibrium Molecular Dynamics
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Influence of Curvature on the Transfer Coefficients for Evaporation and Condensation of Lennard-Jones Fluid from Square-Gradient Theory and Nonequilibrium Molecular Dynamics

机译:基于平方梯度理论和非平衡分子动力学的曲率对Lennard-Jones流体蒸发和冷凝传递系数的影响

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摘要

The influence of curvature on heat and mass transfer across interfaces is often significant in nanoscopic systems. An important example is the initial growth phase of bubbles and droplets in nucleation processes, where they have radii of only a few nanometers. Curvature can be consistently handled within the framework of nonequilibrium thermodynamics by expanding the interface transfer coefficients in the total and Gaussian curvatures. We formulate the coefficients in this expansion analytically and calculate them to second order along the vapor-liquid coexistence line of the Lennard-Jones fluid, which models argon to a good accuracy. To achieve this, square-gradient theory is combined with nonequilibrium molecular dynamics. We discuss how the coefficients depend on the temperature and the truncation value of the interaction potential. The presented coefficients can be used directly to describe heat and mass transfer across interfaces of bubbles/droplets in the Lennard-Jones fluid with cylindrical, spherical, or complex geometries.
机译:曲率对跨界面传热和传质的影响在纳米系统中通常很重要。一个重要的例子是气泡和液滴在成核过程中的初始生长阶段,其半径只有几纳米。通过扩展总曲率和高斯曲率中的界面传递系数,可以在非平衡热力学框架内一致地处理曲率。我们以解析方式公式化此膨胀系数,并沿Lennard-Jones流体的汽液共存线将其计算为二阶,从而对氩气进行了很好的建模。为此,将方形梯度理论与非平衡分子动力学相结合。我们讨论了系数如何取决于温度和相互作用势的截断值。呈现的系数可以直接用于描述圆柱,球形或复杂几何形状的Lennard-Jones流体中气泡/液滴界面之间的传热和传质。

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