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Experimental study of convective condensation in an inclined smooth tube. Part II: Inclination effect on pressure drops and void fractions

机译:斜管中对流冷凝的实验研究。第二部分:倾斜对压降和空隙率的影响

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This article is the second part of a two-part paper, dealing with an experimental study of convective condensation of R134a at a saturation temperature of 40 ℃ in an 8.38 mm inner diameter smooth tube in inclined orientations. The first part concentrates on the flow pattern and the heat transfer coefficients. This second part presents the pressures drops in the test condenser for different mass fluxes and different vapour qualities for the whole range of inclination angles (downwards and upwards). Pressures drops in a horizontal orientation were compared with correlations available in literature. In a vertical orientation, the experimental results were compared with pressure drop correlations associated with void fraction correlations available in literature. A good agreement was found for vertical upward flows but no correlation predicted correctly the measurements for downward flows. An apparent gravitational pressure drop and an apparent void fraction were defined in order to study the inclination effect on the flow. For upward flows, it seems as if the void fraction and the frictional pressure drop are independent of the inclination angle. Apparent void fractions were successfully compared with correlations in literature. This was not the case for downward flows. The experimental results for stratified downward flows were also successfully compared with the model of Taitel and Dukler.
机译:本文是由两部分组成的文章的第二部分,该文章研究了R134a在饱和温度为40℃,内径为8.38 mm的光滑管中对流冷凝的实验研究。第一部分着重于流型和传热系数。第二部分介绍了在整个倾角范围(向下和向上)中,对于不同的质量通量和不同的蒸汽质量,测试冷凝器中的压降。将水平方向的压降与文献中的相关性进行了比较。在垂直方向上,将实验结果与与文献中可用的空隙率相关性相关的压降相关性进行了比较。对于垂直向上的流量发现了很好的一致性,但是没有相关性正确地预测了向下流量的测量结果。为了研究倾斜对流动的影响,定义了表观重力压降和表观空隙率。对于向上流动,似乎空隙率和摩擦压降与倾斜角无关。表观空隙率已成功地与文献中的相关性进行了比较。向下流不是这种情况。还成功地将分层向下流的实验结果与Taitel和Dukler模型进行了比较。

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