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An experimental study of air-steam condensation on the exterior surface of a vertical tube under natural convection conditions

机译:自然对流条件下垂直管外表面空气蒸汽冷凝的实验研究

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摘要

To investigate the heat transfer characteristics of a condenser tube in a Passive Containment Cooling System (PCCS) of an advanced nuclear power plant, an experimental investigation has been conducted on the air-steam condensation over external surfaces of a vertical tube under natural convection conditions. Local temperature data and average heat transfer coefficients were measured on a test condenser of 40 mm in O.D. and 1.0 m in length while axial air concentrations and wall temperatures were kept almost uniform. The experiments covered the pressure ranging from 2 to 5 bar, the air mass fraction from 0.10 to 0.88, the wall subcooling from 19 to 70 K, and the Grashof number of an air-steam mixture varied from 1.36 • 10~(10) up to 1.42 • 10~(11) accordingly. In particular, the effect of the wall subcooling on the condensation heat transfer coefficient and the total heat removal rate was evaluated. From the comparison to Dehbi's tube data, it was found that the condensation heat transfer coefficients on a vertical tube were significantly influenced by the strength of natural convection of the air-steam mixture, which can be described by the Grashof number. To complement the inadequacy of physical bases in deriving previous correlations, a new empirical correlation for the condensation heat transfer coefficient was proposed by using a consolidated data of this study and Dehbi's test; the Nusselt number is correlated in terms of the Grashof number, Jakob number, and the air mass fraction. The suggested correlation was assessed by experimental data and its deviation was turned out to be less than 26%.
机译:为了研究高级核电站的被动安全壳冷却系统(PCCS)中冷凝器管的传热特性,在自然对流条件下对垂直管外表面的空气蒸汽冷凝进行了实验研究。在O.D中40 mm的测试冷凝器上测量局部温度数据和平均传热系数。长度为1.0 m,同时轴向空气浓度和壁温几乎保持一致。实验涵盖了2至5 bar的压力,0.10至0.88的空气质量分数,19至70 K的壁过冷度以及空气-蒸汽混合物的Grashof数从1.36•10〜(10)起变化。至1.42•10〜(11)。特别地,评估了壁过冷对冷凝传热系数和总除热率的影响。通过与Dehbi管的数据进行比较,发现垂直管上的冷凝传热系数受空气-蒸汽混合物自然对流强度的显着影响,这可以用Grashof数来描述。为了弥补物理基础在推导以前的相关性方面的不足,通过使用本研究的综合数据和Dehbi检验,提出了冷凝传热系数的新的经验相关性。 Nusselt数与Grashof数,Jakob数和空气质量分数相关。建议的相关性已通过实验数据进行了评估,其偏差被证明小于26%。

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