首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Steady and unsteady simulations for annular internal condensing flows, part II: Instability and flow regime transitions
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Steady and unsteady simulations for annular internal condensing flows, part II: Instability and flow regime transitions

机译:环形内部冷凝流的稳态和非稳态模拟,第二部分:不稳定性和流态转换

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摘要

The algorithm for the accurate and relevant numerical solution technique given in part I of this article is used to obtain the results for shear-driven annular condensing flows in horizontal channelswith or without transverse gravity. The unsteady wave simulation capability is used to implement a unique non-linear stability analysis. The steady and unsteady simulations' results for millimeter scale (hydraulic diameter 4-8mm), modest mass-flux (5-120kg/m(2)/s), and refrigerant vapors (FC-72, R113, etc.) are used to mark the approximate location beyond which the annular regime typically transitions to a non-annular regime. These are used to develop correlations for local heat transfer coefficients and the approximate length that marks the transition from annular to non-annular regimes.
机译:本文第一部分中给出的精确而相关的数值求解技术算法,用于获得水平或不垂直重力作用下,剪切驱动的环形冷凝水流动的结果。非稳态波仿真功能用于执行独特的非线性稳定性分析。使用了毫米级(液压直径4-8mm),中等质量通量(5-120kg / m(2)/ s)和制冷剂蒸气(FC-72,R113等)的稳态和非稳态模拟结果。以标记大致位置,在该位置附近,环形区域通常会过渡到非环形区域。这些用于建立局部传热系数和近似长度的相关性,这标志着从环形到非环形状态的过渡。

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