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首页> 外文期刊>Applied Mechanics Reviews: An Assessment of the World Literature in Engineering Sciences >Two-Ph-ase Flow Patterns and Flow-Pattern Maps: Fundamentals and Applications
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Two-Ph-ase Flow Patterns and Flow-Pattern Maps: Fundamentals and Applications

机译:两相流流型和流型图:基本原理和应用

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A comprehensive review of the studies of gas-liquid two-phase flow patterns and flowpattern maps at adiabatic and diabatic conditions is presented in this paper. Especially, besides other situations, this review addresses the studies on microscale channels, which are of great interest in recent years. First, a fundamental knowledge of two-phase flow patterns and their application background is briefly introduced. The features of twophase flow patterns and flow-pattern maps at adiabatic and diabatic conditions are reviewed, including recent studies for ammonia, new refrigerants, and CO2, Then, fundamental studies of gas-liquid flow patterns and flow-pattern maps are presented. In the experimental context, studies of flow patterns and flow-pattern maps in macro- and microscale channels, across tube bundles, at diabatic and adiabatic conditions, under microgravity and in complex channels are summarized. In addition, studies on highly viscous Newtonian fluids (non-Newtonian fluids are beyond the scope of this review) are also mentioned. In the theoretical context, modeling of flow-regime transitions, specific flow patterns, stability, and inteifacial shear is reviewed. Next, flow-pattern-based heat transfer and pressure drop models and heat transfer models for specific flow patterns such as slug flow and annular flow are reviewed. Based on this review, recommendations for future research directions have been given. [DOI: 10.1115/1.2955990]
机译:本文对绝热和非绝热条件下气液两相流型态和流型图的研究进行了综述。特别是,除其他情况外,本综述着重介绍了近年来对微型通道的研究。首先,简要介绍了两相流模式的基本知识及其应用背景。综述了绝热和绝热条件下的两相流型和流型图特征,包括对氨,新制冷剂和二氧化碳的最新研究,然后介绍了气液流型和流型图的基础研究。在实验的背景下,总结了在绝热和绝热条件下,在微重力下和在复杂通道中跨管束的宏观和微观通道中的流型和流型图的研究。另外,还提到了对高粘度牛顿流体的研究(非牛顿流体不在本综述范围内)。在理论上,回顾了流态转换,特定流型,稳定性和界面剪切的模型。接下来,对基于流型的传热和压降模型以及特定流型(如团状流和环形流)的传热模型进行了回顾。在此基础上,对未来的研究方向提出了建议。 [DOI:10.1115 / 1.2955990]

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