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Experimental Study on the Condensation of Steam With Air Out of the Vertical Tube Bundles

机译:垂直管束中蒸汽与空气冷凝的实验研究

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In this paper, experimental study was carried out in an open natural circulation loop,to figure out the condensation heat transfer characteristic on the outside of the vertical pipe tube bundle and single- tube. Condensation heat transfer coefficients have been obtained under the wall subcooling ranging from 5 to 22a?|C, total pressure ranging from 0.3 to 0.6MPa and air mass fraction ranging from 0.05 to 0.65. The influence of mixed gas pressure, condensate depression of walls, and content of non-condensable gas on the condensation heat transfer performance is analyzed. Under the condition of the same air mass fraction, the condensation heat transfer coefficient increases with the increase of pressure. Also, as the air mass fraction is more than 30%, the effect of pressure will be weakened. The heat transfer features of pipe bundle and single tube is compared and studied, and an empirical correlation of the pipe bundle for the heattransfer coefficient is developed, covered all data points within 10%. According to the research results, heat transfer coefficient for pipe bundle decreases with the increase in non-condensable gas quality and wall subcooling, but increases with the increase in pressure.
机译:本文在一个开放的自然循环回路中进行了实验研究,以了解垂直管束和单管外侧的冷凝水传热特性。在壁过冷度为5至22a?| C,总压力为0.3至0.6MPa,空气质量分数为0.05至0.65的情况下获得了冷凝传热系数。分析了混合气体压力,壁的凝结水压降和不可凝气体的含量对凝结传热性能的影响。在相同空气质量分数的条件下,冷凝传热系数随压力的增加而增加。而且,当空气质量分数大于30%时,压力的作用会减弱。比较和研究了管束和单管的传热特性,建立了管束与传热系数的经验相关性,覆盖了所有数据点在10%以内。根据研究结果,管束的传热系数随着不凝性气体质量和壁式过冷度的增加而降低,但随着压力的增加而增加。

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