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Examination of heat transfer correlations and a model for flow boiling of R134a in small diameter tubes

机译:小直径管中R134a的传热相关性检验和流动沸腾模型

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Analysis of various existing correlations including a three-zone evaporation model is made using a comparison with recent experimental results obtained in this study. Flow boiling heat transfer experiments were conducted with two stainless steel tubes of internal diameter 4.26 mm and 2.01 mm. The working fluid was R134a and parameters were varied in the range: mass flux 100-500 kg/m~2s; pressure 8-12 bar; quality up to 0.9; heat flux 13-150 kW/m~2. The local heat transfer coefficient was independent of vapour quality when this was less than about 40-50% in the 4.26 mm tube and 20-30% in the 2.01 mm tube. Local transient dryout was deduced when the quality was above these values. Furthermore, at high heat flux values the heat transfer coefficient decreased with vapour quality for the entire quality range indicating early occurrence of dryout. Existing correlations, which are based on large tube boiling processes, do not predict the present small diameter data to a satisfactory degree. A better agreement is observed with the recent, state-of-the-art, three-zone evaporation model. However, the model does not predict the effect of diameter and the partial dryout. Nevertheless, the observation suggests that the flow pattern based modelling approach performs at least as well as empirical correlations that are based on macroscale modelling. Aspects of the model that need further consideration are also proposed in this study.
机译:通过与本研究中获得的最新实验结果进行比较,分析了包括三区蒸发模型在内的各种现有相关性。用两个内径为4.26mm和2.01mm的不锈钢管进行沸腾传热实验。工作流体为R134a,参数在以下范围内变化:质量通量100-500 kg / m〜2s;压力8-12 bar;质量达到0.9;热通量13-150 kW / m〜2。当在4.26毫米管中小于40-50%,在2.01毫米管中小于20-30%时,局部传热系数与蒸汽质量无关。当质量高于这些值时,可以推断出局部短暂变干。此外,在高热通量值下,在整个质量范围内,传热系数随蒸汽质量而下降,这表明较早发生干透。基于大管沸腾过程的现有相关性无法令人满意地预测当前的小直径数据。使用最新的最新三区蒸发模型可以更好地达成共识。但是,该模型无法预测直径和部分变干的影响。尽管如此,该观察结果表明,基于流模式的建模方法至少执行与基于宏观建模的经验相关性以及相关性。该研究还提出了需要进一步考虑的模型方面。

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