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Condensation heat transfer in smooth inclined tubes for R134a at different saturation temperatures

机译:R134a在不同饱和温度下在光滑倾斜管中的冷凝传热

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This paper presents the effects of saturation temperature and inclination angle on convective heat transfer during condensation of R134a in an inclined smooth tube of inner diameter of 8.38 mm. Experiments were conducted for inclination angles ranging from -90° (vertical downwards) to +90° (vertical upwards) for mass fluxes between 100 kg/m~2 s and 400 kg/m~2 s and mean vapour qualities between 0.1 and 0.9 for saturation temperatures ranging between 30 ℃ and 50 ℃ in a test matrix of 637 test data points. The results showed that saturation temperature and inclination angle strongly influenced the heat transfer coefficient. With respect to saturation temperature, an increase in saturation temperature generally led to a decrease in heat transfer coefficient irrespective of the inclination angle. The effect of inclination angle was found to be more pronounced at mass fluxes of 100 kg/m~2 s and 200 kg/m~2 s for the range of mean vapour qualities considered. Within the region of influence of inclination, there was an optimum angle, which was between -15° and -30° (downward flow). The inclination effect corresponded to the predominance of the effect of gravity on the flow distribution. An increase in saturation temperature increased the effect of inclination on two-phase heat transfer.
机译:本文介绍了在内径为8.38 mm的倾斜光滑管中R134a冷凝过程中,饱和温度和倾斜角度对对流换热的影响。对于100 kg / m〜2 s和400 kg / m〜2 s之间的质量通量和平均蒸气质量在0.1和0.9之间的质量通量,进行了从-90°(垂直向下)到+ 90°(垂直向上)的倾斜角度实验在637个测试数据点的测试矩阵中,饱和温度为30℃至50℃。结果表明,饱和温度和倾斜角度对传热系数有很大影响。关于饱和温度,饱和温度的升高通常导致与倾斜角无关的传热系数的降低。对于所考虑的平均蒸气质量范围,发现在100 kg / m〜2 s和200 kg / m〜2 s的质量通量下,倾斜角的影响更为明显。在倾斜影响区域内,存在一个最佳角度,该角度介于-15°和-30°之间(向下流动)。倾斜效果对应于重力对流量分布的影响。饱和温度的升高增加了倾斜对两相传热的影响。

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