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Analysis of MSGTR-PAFS Accident of the ATLAS using the MARS-KS Code

MARS-KS 코드를 사용한 ATLAS 실험장치의 MSGTR-PAFS 사고 분석

  • Jeong, Hyunjoon (Department of Safety Engineering, Incheon National University) ;
  • Kim, Taewan (Department of Safety Engineering, Incheon National University)
  • 정현준 (인천대학교 안전공학과) ;
  • 김태완 (인천대학교 안전공학과)
  • Received : 2021.04.13
  • Accepted : 2021.04.30
  • Published : 2021.06.30

Abstract

Korea Atomic Energy Research Institute (KAERI) has been operating an integral effects test facility, the Advanced Thermal-Hydraulic Test Loop for Accident Simulation (ATLAS), according to APR1400 for transient experimental and design basis accident simulation. Moreover, based on the experimental data, the domestic standard problem (DSP) program has been conducted in Korea to validate system codes. Recently, through DSP-05, the performance of the passive auxiliary feedwater system (PAFS) in the event of multiple steam generator tube rupture (MSGTR) has been analyzed. However, some errors exist in the reference input model distributed for DSP-05. Furthermore, the calculation results of the heat loss correlation for the secondary system presented in the technical report of the reference indicate that a large difference is present in heat loss from the target value. Thus, in this study, the reference model is corrected using the geometric information from the design report and drawings of ATLAS. Additionally, a new heat loss correlation is suggested by fitting the results of the heat loss tests. Herein, MSGTR-PAFS accident analysis is performed using MARS-KS 1.5 with the improved model. The steady-state calculation results do not significantly differ from the experimental values, and the overall physical behavior of the transient state is properly predicted. Particularly, the predicted operating time of PAFS is similar to the experimental results obtained by the modified model. Furthermore, the operating time of PAFS varies according to the heat loss of the secondary system, and the sensitivity analysis results for the heat loss of the secondary system are presented.

Keywords

References

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