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Experimental study of air accumulation in vapor condensation across horizontal tube

机译:横管内蒸汽冷凝中空气积聚的实验研究

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In this study, air accumulation in vapor condensation across a horizontal tube was investigated experimentally. A total of 16 thermistors were mounted uniformly on the horizontal tube wall along the circumference of z = 0.17 m and z = 0.63 m to measure wall temperature. Results show that vapor exists as a three-dimensional diffusion flow and air is carried by vapor toward the downstream at at θ = 135°-225° and z = 0-0.6 m, and forms a saturated moist air region there, whereas another region is full of moist vapor. A vapor flowing front lies at the joint of two regions, where interdiffusion between vapor and air is in dynamic equilibrium. In the saturated moist air region, the ratio of gas film layer to overall thermal resistance is within the range of 0.92-0.97, the air mole fraction on the gas-liquid interface is within the range of 0.75-0.87, and the heat transfer coefficient at the condensation side is less than 300 W m~-2 K~-1. An increase in cooling water mass flux pushes the vapor flowing front forward, expanding the moist vapor region, ultimately enlarging the vapor condensation area. The present experimental results were compared with the results of the works of Zhou and Rose (1996), Sherkriladze and Gomelauri (1966), Rose (1984), Fujii et al. (1972), Memory et al. (1993), and Chen and Lin (2009). The wall temperature distribution and Nu/Rel~(0.5)_1 variation are reasonable.
机译:在这项研究中,实验研究了水平管中蒸汽冷凝中的空气积聚。将总共​​16个热敏电阻沿z = 0.17 m和z = 0.63 m的圆周均匀地安装在水平管壁上,以测量壁温。结果表明,蒸汽以三维扩散流的形式存在,空气在θ= 135°-225°和z = 0-0.6 m时被蒸汽带向下游,并在此处形成饱和潮湿空气区域,而另一个区域充满湿气。蒸气流动的前沿位于两个区域的连接处,在该区域,蒸气与空气之间的相互扩散处于动态平衡状态。在饱和湿空气区域,气膜层与总热阻之比在0.92-0.97的范围内,气液界面上的空气摩尔分数在0.75-0.87的范围内,传热系数在冷凝侧的能量小于300 W m〜-2 K〜-1。冷却水质量通量的增加使蒸汽向前流动,扩大了湿蒸汽区域,最终扩大了蒸汽冷凝面积。目前的实验结果与Zhou和Rose(1996),Sherkriladze和Gomelauri(1966),Rose(1984),Fujii等人的工作结果进行了比较。 (1972),Memory等。 (1993),以及Chen和Lin(2009)。壁温分布和Nu / Rel〜(0.5)_1变化是合理的。

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