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Study on laminar film-wise condensation for vapor flow in an inclined small/mini-diameter tube

机译:倾斜的小直径/小直径管中的蒸汽流动的层流膜式冷凝研究

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摘要

The correlating factors for flow condensation in small/mini-diameter tubes are analyzed by energy consideration. Based on the in-situ interface configuration, an analytical model is proposed for predicting the heat transfer characteristics. Both analytical and experimental results show that gravity has a decreasing effect on flow condensation in small/mini tubes. The inclination angle affects condensation heat transfer mainly by distributing gravity in stratifying the fluids and thinning the liquid film. In larger tubes, the former may become the main reason for heat transfer enhancement, especially in high vapor quality zone and at low inlet vapor Reynolds number. Comparison with the experimental data indicates that the proposed analytical model has a good capability for predicting flow condensation heat transfer in small/mini-diameter tubes.
机译:通过能量考虑分析了小/小直径管中流动冷凝的相关因素。基于原位界面结构,提出了一种用于预测传热特性的解析模型。分析和实验结果均表明,重力对小/微型管中的流动凝结具有减小的影响。倾斜角主要通过在使流体分层和使液膜变薄时分配重力来影响冷凝传热。在较大的管中,前者可能成为增强传热的主要原因,尤其是在高蒸气质量区域和低入口蒸气雷诺数的情况下。与实验数据的比较表明,所提出的分析模型具有良好的预测小/小直径管中的冷凝水传热的能力。

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