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THE KELVIN EQUATION AND SELF-CONSISTENT NUCLEATION THEORY

机译:开尔文方程和自洽核理论

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Issues of self-consistency are reviewed for several unary equilibrium size distributions based on the capillarity approximation. Some apparent difficulties of interpretation are resolved. In terms of the kinetic approach to nucleation theory, the influence of self-consistency on the nucleation rate is shown to arise entirely from differences in the dimer evaporation rates for nearly all versions of classical theory. The nucleation rate behavior of the Kelvin model is explored. In this model, the Kelvin equation is used to prescribe all cluster evaporation rates. Nucleation rates predicted by the Kelvin model are quantitatively similar to those of the self-consistent classical (SCC) theory, but not to other simple versions of the classical theory. This behavior arises entirely from the relatively close coincidence of the SCC and Kelvin dimer evaporation rates. This means that, for the distribution-based versions of classical theory, the SCC model is the closest analogue of the Kelvin model. Because the Kelvin equation is fundamentally inadequate for very small clusters, the close relationship between the Kelvin and SCC formulations indicates that both are equally lacking in fundamental justification. The Kelvin model may, however, have some pragmatic utility, and a simple analytical rate expression is also derived for it to simplify the calculation of nucleation rates for this model. (C) 1995 American Institute of Physics. [References: 44]
机译:在毛细近似的基础上,针对几个一元平衡尺寸分布,对自洽问题进行了综述。解决了一些明显的解释困难。就成核理论的动力学方法而言,自相容性对成核速率的影响显示出完全来自几乎所有经典理论版本的二聚体蒸发速率的差异。探索开尔文模型的成核速率行为。在该模型中,开尔文方程式用于规定所有簇的蒸发速率。开尔文模型预测的成核速率在数量上与自洽经典(SCC)理论的成核速率相似,但与经典理论的其他简单版本不相似。这种现象完全来自SCC和Kelvin二聚体蒸发速率的相对一致。这意味着,对于经典理论的基于分布的版本,SCC模型是开尔文模型的最相似模型。由于开尔文方程从根本上不足以适用于非常小的聚类,因此开尔文公式与SCC公式之间的密切关系表明两者均缺乏基本的论证依据。但是,开尔文(Kelvin)模型可能具有一定的实用性,并且还为其导出了一个简单的分析速率表达式,以简化该模型的成核速率的计算。 (C)1995年美国物理研究所。 [参考:44]

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