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Heat transfer, pressure drop and flow patterns during flow boiling of R407C in a horizontal microfin tube

机译:R407C在水平微翅管中沸腾过程中的传热,压降和流型

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摘要

The heat transfer, pressure drop and flow patterns during flow boiling of R407C in a horizontal microfin tube have been investigated. The microfin tube is made of copper with a total fin number of 55 and a helix angle of 15°. The fin height is 0.24 mm and the inner tube diameter at fin root is 8.95 mm. The test tube is 1 m long. It is heated electrically. The experiments have been performed at saturation temperatures between —30°C and +10°C. The mass flux was varied between 25 and 300 kg/m2/s, the heat flux from 20,000 W/m2 down to 1,000 W/m2. The vapour quality was kept constant at 0.1, 0.3, 0.5, 0.7 at the inlet and 0.8, 1.0 at the outlet, respectively. The measured heat transfer coefficient is compared with the correlations of Cavallini et al., Shah as well as Zhang et al. Cavallini's correlation contains seven experimental constants. After fitting these constants to our measured values, the correlation achieves good agreement. The measured pressure drop is compared to the correlations of Pierre, Kuo and Wang as well as Miiller-Steinhagen and Heck. The best agreement is achieved with the correlation of Kuo and Wang. Almost all values are calculated within an accuracy of ±30%. The flow regimes were observed. It is shown, that changes in the flow regime affect the heat transfer coefficient significantly.
机译:研究了水平微翅片管中R407C沸腾过程中的传热,压降和流型。微翅片管由铜制成,翅片总数为55,螺旋角为15°。翅片高度为0.24mm,翅片根部的内管直径为8.95mm。试管长1 m。它被电加热。实验已在-30°C至+ 10°C的饱和温度下进行。质量通量在25至300 kg / m2 / s之间变化,热通量从20,000 W / m2降至1,000 W / m2。蒸汽质量分别保持恒定,分别在入口处为0.1、0.3、0.5、0.7,在出口处为0.8、1.0。将测得的传热系数与Cavallini等人(Shah以及Zhang等人)的相关性进行比较。卡瓦利尼的相关性包含七个实验常数。将这些常数拟合到我们的测量值后,相关性达到良好的一致性。将测得的压降与Pierre,Kuo和Wang以及Miiller-Steinhagen和Heck的相关性进行比较。 Kuo和Wang的相关性可以达到最好的一致性。几乎所有值的计算精度都在±30%之内。观察流动状态。结果表明,流动状态的变化会显着影响传热系数。

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  • 来源
    《Heat and mass transfer》 |2011年第8期|p.951-961|共11页
  • 作者单位

    Institute of Thermodynamics and Thermal Engineering,University of Stuttgart, Stuttgart, Germany;

    Institute of Thermodynamics and Thermal Engineering,University of Stuttgart, Stuttgart, Germany;

    Technical University of Dresden, Dresden, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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