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A Generalized Diffusion Layer Model for Condensation of Vapor With Noncondensable Gases

机译:一种用于蒸气与不凝性气体冷凝的广义扩散层模型

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摘要

The diffusion layer model for condensation heat transfer of vapor with noncondensable gases was originally derived on a molar basis and developed from an approximate formulation of mass diffusion, by neglecting the effect of variable vapor-gas mixture molecular weights across the diffusion layer on mass diffusion. This is valid for gases having a molecular weight close to that of the vapor or for low vapor mass transfer rates, but it may cause serious error if a large gradient in the gas concentration exists across the diffusion layer. The analysis herein shows that, from the kinetic theory of gases, Fick's law of diffusion is more appropriately expressed on a mass basis than on a molar basis. Then a generalized diffusion layer model is derived on a mass basis with an exact formulation of mass diffusion. The generalized model considers the effect of variable mixture molecular weights across the diffusion layer on mass diffusion and fog formation effects on sensible heat. The new model outperforms the one developed by Peterson when comparing with a wide-ranging experimental database. Under certain limiting conditions, the generalized model reduces to the one developed by Peterson.
机译:蒸汽与不凝性气体的冷凝传热的扩散层模型最初是在摩尔基础上推导的,并通过忽略扩散层上可变的蒸汽-气体混合物分子量对质量扩散的影响,从质量扩散的近似公式发展而来。这适用于分子量接近蒸汽的气体或低蒸汽传质速率,但如果扩散层上的气体浓度梯度很大,则可能会导致严重误差。本文的分析表明,从气体动力学理论来看,菲克扩散定律以质量为基础比以摩尔为基础更合适。然后,在质量基础上推导广义扩散层模型,并给出质量扩散的精确公式。广义模型考虑了扩散层中可变混合物分子量对质量扩散的影响,以及雾的形成对显热的影响。与广泛的实验数据库相比,新模型优于 Peterson 开发的模型。在某些限制条件下,广义模型简化为 Peterson 开发的模型。

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