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Evaluation of Reflux Condensation Heat Transfer of Steam-Air Mixtures under Gas-Liquid Countercurrent Flow in a Vertical Tube

机译:垂直管中气液逆流下蒸汽-空气混合物回流冷凝热传递的评估

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摘要

Reflux condensation in steam generator (SG) is one of the major heat removal mechanisms in a loss of residual heat removal (RHR) system event in mid-loop operation during a pressurized water reactor (PWR) plant outage. In order to evaluate the effectiveness of reflux condensation in SG U-tubes, the condensation heat transfer characteristics in the presence of a non-condensable gas must be clarified. Local temperature data were previously measured for steam-air mixtures under gas-liquid countercurrent flow, in a vertical tube of inner diameter 19.3 mm. In this study, local reflux heat transfer coefficients were calculated by evaluating steam flow rate profile along the tube at low heat fluxes assuming saturated steam conditions and empirical correlations were derived. The correlations are valid over a range 2-9,000 W/m{sup}2-K for 0.1-0.4 MPa, 0.014-0.2 air mass fraction. The axial distributions of the steam-air mixture temperatures calculated using the correlation agreed well with the measured results and validity of evaluation methods and the correlation were verified.
机译:蒸汽发生器(SG)中的回流冷凝是压水堆(PWR)工厂停运期间中环运行中残留热量去除(RHR)系统事件中的主要热量去除机制之一。为了评估SG U型管中回流冷凝的有效性,必须弄清存在不可冷凝气体时的冷凝传热特性。事先在气液逆流条件下,在内径为19.3 mm的垂直管中测量了蒸汽-空气混合物的局部温度数据。在这项研究中,假设在饱和蒸汽条件下,通过估算沿管道在低热通量下的蒸汽流速分布,得出了局部回流传热系数,并得出了经验相关性。在0.1-0.4 MPa,0.01-4-0.2空气质量分数的情况下,相关关系在2-9,000 W / m {sup} 2-K的范围内有效。利用相关性计算出的蒸汽-空气混合物温度的轴向分布与测量结果吻合良好,评价方法的有效性和相关性得到验证。

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