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Steam condensation on a downward-facing plate in presence of air

  • Ronghua Chen
  • , Penghui Zhang
  • , Bing Tan
  • , Pan Ma
  • , Zhangli Wang
  • , Di Zhang
  • , Wenxi Tian
  • , Suizheng Qiu
  • , G. H. Su
  • Xi'an Jiaotong University
  • Shanghai Nuclear Engineering Research & Design Institute

科研成果: 期刊稿件文章同行评审

21 引用 (Scopus)

摘要

Steam condensation on the containment vessel is a significant cooling strategy to cope with the design basis accidents in the third-generation reactors with passive safety features. Aiming to evaluate the heat removal capacity of steam condensation, a number of condensation experiments have been conducted on a horizontal plate with the same surface condition as CAP1400 containment vessel. The effects of surface sub-cooling, air concentration, bulk pressure and different steam injecting models on condensation heat transfer have been experimentally investigated. In the experiments, the condensation heat transfer coefficients (within the range of 77–1297 W/m2 K)on the downward-facing plate are successfully obtained under the conditions of bulk pressure ranging from 0.154 to 0.607 MPa, air molar fraction ranging from 1.1% to 82.9% and surface sub-cooling ranging from 12.6 to 49.3 °C. In addition, an empirical correlation for heat transfer prediction has been developed based on the experimental data in this work. Besides, the experimental data have also been compared with four existing empirical correlations proposed by Uchida, Tagami, Dehbi and Liu, respectively. The comparing results show that most of condensation heat transfer coefficient data on the test plate could be overestimated by these four correlations.

源语言英语
页(从-至)451-460
页数10
期刊Annals of Nuclear Energy
132
DOI
出版状态已出版 - 10月 2019

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