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Review of vapor condensation heat and mass transfer in the presence of non-condensable gas

机译:审查不凝性气体存在下的蒸气凝结传热和传质

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摘要

In 1929, Donald Othmer discovered that a small amount of non-condensable gases (NCG) in pure vapor had a great effect on condensation heat transfer coefficient (HTC), reducing the efficiency of heat transfer equipment. Since then, a large amount of research has been performed. This paper reviews experimental, mechanism and model research progresses in condensation in the presence of NCG. Particular attention is given to research on physical models of heat transfer for filmwise condensation (FWC) with NCG, with a brief review of dropwise condensation (DWC). The models for FWC heat transfer in the presence of NCG can be divided into two categories: semi-theoretical models and theoretical models. The semi-theoretical models are based on hydraulics and thermodynamics, use some specific parameters of the correlation which determined by experiments, and are suitable for engineering design. The theoretical models are based on mass, momentum, and energy conservation equations, and divided into boundary layer models and diffusion layer models. Through research of experiments and models people found that, condensate film thickness, surface waves, interfacial shear strength and suction effect play an important role in the FWC heat transfer in presence of NCG. (C) 2015 Elsevier Ltd. All rights reserved.
机译:1929年,唐纳德·奥斯特默(Donald Othmer)发现,纯蒸气中的少量非冷凝气体(NCG)对冷凝传热系数(HTC)产生很大影响,从而降低了传热设备的效率。从那以后,进行了大量的研究。本文综述了在NCG存在下冷凝过程的实验,机理和模型研究进展。特别注意研究了带有NCG的薄膜冷凝(FWC)的传热物理模型,并简要回顾了滴滴冷凝(DWC)。存在NCG时FWC传热模型可以分为两类:半理论模型和理论模型。半理论模型基于水力学和热力学,使用通过实验确定的一些特定的相关参数,适合工程设计。理论模型基于质量,动量和能量守恒方程,分为边界层模型和扩散层模型。通过实验和模型的研究,人们发现,凝结膜的厚度,表面波,界面剪切强度和吸力效应在存在NCG的FWC传热中起着重要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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