Solution of the BEAVRS benchmark using the nTRACER direct whole core calculation code

被引:54
|
作者
Ryu, Min [1 ]
Jung, Yeon Sang [1 ]
Cho, Hyun Ho [1 ]
Joo, Han Gyu [1 ]
机构
[1] Seoul Natl Univ, Dept Nucl Engn, Seoul 151744, South Korea
基金
新加坡国家研究基金会;
关键词
BEAVRS benchmark; direct whole core calculation; core follow; Ntracer;
D O I
10.1080/00223131.2015.1038664
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The BEAVRS (Benchmark for Evaluation and Validation of Reactor Simulation) benchmark is solved by the nTRACER direct whole core calculation code to assess its accuracy and to examine the solution dependence on modeling parameters. A sophisticated nTRACER core model representing the BEAVRS core is prepared after a series of sensitivity study to ensure solution accuracy. The resulting solutions for several hot-zero-power (HZP) states are compared first with the corresponding Monte Carlo solutions, which consist of the McCARD solutions for the assembly problems and the OpenMC solutions for the core problems, and then with the measured data which include the control rod worths (CRWs) and incore detector signals as well as the critical boron concentrations (CBC). The core depletion calculation is performed for the initial and second cycles with a set of approximated power histories and the calculated CBCs are compared with the measured data. The comparison results show that the criticality, control rod bank worths at HZP and the boron let-down curves of two cycles agree well with the measurements within 180 pcm and 25 ppm, respectively.
引用
收藏
页码:961 / 969
页数:9
相关论文
共 50 条
  • [1] Solution of the BEAVRS benchmark using the nTRACER direct whole core calculation code
    Department of Nuclear Engineering, Seoul National University, 1 Gwanak-gu, Seoul
    151-744, Korea, Republic of
    不详
    IN, United States
    J. Nucl. Sci. Technol., 7-8 (961-969):
  • [2] Geometry Extension and Assemblywise Domain Decomposition of nTRACER for Direct Whole-Core Calculation of VVERs
    Kim, Seongchan
    Joo, Han Gyu
    NUCLEAR SCIENCE AND ENGINEERING, 2023, 197 (08) : 1564 - 1583
  • [3] Verification on criticality calculation of RMC with BEAVRS full-core benchmark
    Tang, Xiao
    Liang, Jinggang
    Wang, Kan
    Ge, Panhe
    Li, Wanlin
    Hedongli Gongcheng/Nuclear Power Engineering, 2014, 35 : 235 - 238
  • [4] Solution of the C5G7MOX benchmark three-dimensional extension problems by the DeCART direct whole core calculation code
    Cho, Jin Young
    Joo, Han Gyu
    PROGRESS IN NUCLEAR ENERGY, 2006, 48 (05) : 456 - 466
  • [5] Direct whole core modeling and simulation of the SPERT III E-Core experiments by nTRACER
    Kang, Junsu
    Ryu, Min
    Jae, Seungug
    Kim, Hyeongseog
    Joo, Han Gyu
    PROGRESS IN NUCLEAR ENERGY, 2021, 139
  • [6] Validation of the Serpent-ARES code sequence using the MIT BEAVRS benchmark - Initial core at HZP conditions
    Leppanen, Jaakko
    Mattila, Riku
    Pusa, Maria
    ANNALS OF NUCLEAR ENERGY, 2014, 69 : 212 - 225
  • [7] Solution of the VVER-1000 full core calculation benchmark by the KARATE code system
    Temesvari, E.
    Hegyi, Gy
    Hordosy, G.
    Maraczy, Cs
    KERNTECHNIK, 2020, 85 (04) : 245 - 249
  • [8] BEAVRS full core burnup calculation in hot full power condition by RMC code
    Liu, Shichang
    Liang, Jingang
    Wu, Qu
    Guo, JuanJuan
    Huang, Shanfang
    Tang, Xiao
    Li, Zeguang
    Wang, Kan
    ANNALS OF NUCLEAR ENERGY, 2017, 101 : 434 - 446
  • [9] Whole-core analysis of BEAVRS benchmark for hot zero power condition using MVP3 with JENDL-5
    Suzuki, Motomu
    Nagaya, Yasunobu
    JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, 2024, 61 (02) : 177 - 191
  • [10] Neutronic Analysis of Accident-Tolerant Cladding Materials in 3D Full Core BEAVRS PWR Benchmark Using OpenMC Code
    Alamri, Khalid A.
    Alqahtani, Meshari M.
    Alomari, Abdullah S.
    Almarshad, Abdullah I.
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2024, 2024