Research of Deterministic Realistic Methodology for HPR1000 Containment Thermal Response Analysis

被引:0
|
作者
Cui X. [1 ]
Lu X. [1 ]
Yang J. [1 ]
Shen Y. [1 ]
Lin Z. [1 ]
Luo H. [1 ]
机构
[1] China Nuclear Power Technology Research Institute, Shenzhen
关键词
Containment thermal response; Deterministic realistic methodology; HPR1000; Loss of coolant accident; Mass and energy release;
D O I
10.7538/yzk.2020.youxian.0899
中图分类号
学科分类号
摘要
Loss of coolant accident (LOCA) is a typical design basic accident (DBA) for pressurized water reactors (PWR). The containment thermal response process, especially containment peak pressure (CPP), will directly affect the structure integrity of the containment. The deterministic realistic methodology (DRM) was applied to analyze LOCA mass and energy release and containment thermal response for HPR1000 nuclear power plant (NPP). Sensitivity analysis and statistical calculation were made for the key parameters, and the DRM penalty model was established. The results show that the calculated value of DRM penalty model is always higher than the statistically calculated values with 95% confidence level and 95% probability. The study proves the conservatism of DRM penalty model and also demonstrates the applicability of DRM for LOCA mass and energy release and containment thermal response analysis for HPR1000 NPP. © 2021, Editorial Board of Atomic Energy Science and Technology. All right reserved.
引用
下载
收藏
页码:1721 / 1728
页数:7
相关论文
共 15 条
  • [11] HUANG Yanping, CAO Nian, WEN Yan, Et al., Main features of CATHARE code and its application, Nuclear Power Engineering, 24, 6, pp. 540-544, (2003)
  • [12] YOUNG M Y, BAJOREK S M, NISSLEY M E, Et al., Application of code scaling applicability and uncertainty methodology to the large break loss of coolant, Nuclear Engineering and Design, 2, pp. 39-52, (1998)
  • [13] Quantifying reactor safety margins: Application of code scaling, applicability, and uncertainty evaluation methodology to a large-break, loss-of-coolant accident, NUREG/CR-5249, (1989)
  • [14] WILK' S S S., Determination of sample sizes for setting tolerance limits, The Annals of Mathematical Statistics, 13, pp. 91-96, (1941)
  • [15] LIN Zhikang, WANG Ting, LIN Jianshu, Et al., Investigation on uncertainty quantification method in realistic LOCA analysis, Nuclear Power Engineering, 37, 3, pp. 75-79, (2016)