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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface thermodynamic analysis of fluid confined in a cone and comparison with the sphere-plate and plate-plate geometries
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Surface thermodynamic analysis of fluid confined in a cone and comparison with the sphere-plate and plate-plate geometries

机译:限制在圆锥体中的流体的表面热力学分析,并与球体板和板-板几何形状进行比较

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The behavior of pure fluid confined in a cone is investigated using thermodynamic stability analysis. Four situations are explained on the basis of the initial confined phase (liquid/vapor) and its pressure (above/below the saturation pressure). Thermodynamic stability analysis (a plot of the free energy of the system versus the size of the new potential phase) reveals whether the phase transition is possible and, if so, the number and type (unstable/metastable/stable) of equilibrium states in each of these situations. Moreover we investigated the effect of the equilibrium contact angle and the cone angle (equivalent to the confinement's surface separation distance) on the free energy (potential equilibrium states). The results are then compared to our previous study of pure fluid confined in the gap between a sphere and a flat plate and the gap between two flat plates.1 Confined fluid behavior of the four possible situations (for these three geometries) can be explained in a unified framework under two categories based on only the meniscus shape (concave/convex). For systems with bulk-phase pressure imposed by a reservoir, the stable coexistence of pure liquid and vapor is possible only when the meniscus is concave.
机译:使用热力学稳定性分析研究了封闭在圆锥体中的纯流体的行为。根据初始限制相(液体/蒸气)及其压力(高于或低于饱和压力)说明了四种情况。热力学稳定性分析(系统自由能与新势相大小的关系图)揭示了相变是否可能,如果可能,则每个相中平衡态的数量和类型(不稳定/易变/稳定)这些情况中。此外,我们研究了平衡接触角和锥角(等效于约束的表面分离距离)对自由能(势平衡态)的影响。然后将结果与我们先前对球体和平板之间的间隙以及两块平板之间的间隙中的纯流体的研究进行比较。1可以解释四种可能情况(对于这三种几何形状)的有限流体行为仅基于弯月面形状(凹/凸)的两类统一框架。对于由油箱施加的具有大相压力的系统,只有当弯液面是凹面时,纯液体和蒸气才能稳定地共存。

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