首页> 外文期刊>International Journal of Heat and Mass Transfer >Critical heat flux performance for flow boiling of R-134a in vertical uniformly heated smooth tube and rifled tubes
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Critical heat flux performance for flow boiling of R-134a in vertical uniformly heated smooth tube and rifled tubes

机译:R-134a在垂直均匀加热的光滑管和有膛管中流动沸腾的临界热通量性能

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摘要

In the present paper, critical heat flux (CHF) experiments for flow boiling of R-134a were performed to investigate the CHF characteristics of four-head and six-head rifled tubes in comparison with a smooth tube. Both of rifled tubes having different head geometry have the maximum inner diameter of 17.04 mm while the smooth tube has the average inner diameter of 17.04 mm. The experiments were conducted for the vertical orientation under outlet pressures of 13, 16.5, and 23.9 bar, mass fluxes of 285-1300 kg/m~2s and inlet subcooling temperatures of 5-40℃ in the R-134a CHF test loop. The parametric trends of CHF for the tubes show a good agreement with previous understanding. In particular, CHF data of the smooth tube for R-134a were compared with well-known CHF correlations such as Bowring and Katto correlations. The CHF in the rifled tube was enhanced to 40-60% for the CHF in the smooth tube with depending on the rifled geometry and flow parameters such as pressure and mass flux. In relation to the enhancement mechanism, the relative vapor velocity is used to explain the characteristics of the CHF performance in the rifled tube.
机译:在本文中,进行了R-134a流动沸腾的临界热通量(CHF)实验,以研究四头和六头有膛线管与光滑管的CHF特性。具有不同头部几何形状的两根有膛线管的最大内径为17.04毫米,而光滑管的平均内径为17.04毫米。在R-134a CHF测试回路中,在出口压力为13、16.5和23.9 bar,质量通量为285-1300 kg / m〜2s和入口过冷温度为5-40℃的条件下进行了垂直定向实验。试管的CHF参数趋势与先前的理解显示出很好的一致性。尤其是,将R-134a的光滑管的CHF数据与众所周知的CHF相关性(例如Bowring和Katto相关性)进行了比较。取决于裂口的几何形状和流量参数(例如压力和质量通量),将裂口管中的CHF提高到平滑管中的CHF的40-60%。关于增强机理,相对蒸气速度用于解释在有膛线的管中的CHF性能的特征。

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