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Shin, Dong-Ho; Cho, Hyoung-Kyu; Tak, Nam-Il; Park, Goon-Cherl, E-mail: clavis21@snu.ac.kr
7th International Topical Meeting on High Temperature Reactor Technology: The modular HTR is advancing towards reality. Papers and Presentations2014
7th International Topical Meeting on High Temperature Reactor Technology: The modular HTR is advancing towards reality. Papers and Presentations2014
AbstractAbstract
[en] Effective thermal conductivity models which can be used to analyze the heat transfer phenomena of a prismatic fuel block were evaluated by CFD analysis. In the accident condition of VHTR when forced convection is lost, the heat flows in radial direction through the hexagonal fuel blocks that contain the large number of coolant holes and fuel compacts. Due to the complex geometry of fuel block and radiation heat transfer; the detail heat transfer computation on the fuel block needs excessive computation resources. Therefore, the detail computation isn’t appropriate for the lumped parameter code. The system code such as GAMMA+ adopts effective thermal conductivity model. Despite the complexity in heat transfer modes, the accurate analysis on the heat transfer in fuel block is necessary since it is directly relevant to the integrity of nuclear fuel embedded in fuel block. To satisfy the accurate analysis of complex heat transfer modes with limited computing sources, the credible effective thermal conductivity (ETC) models in which the effects of all of heat transfer modes are lumped is necessary. In this study, various ETC models were introduced and they are evaluated with CFD calculations. It is estimated that Maxwell-based model was the most pertinent one among the introduced ETC models. (author)
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Tsinghua University, Institute of Nuclear and New Energy Technology (INET), Beijing (China); China Huaneng, Shandong Shidao Bay Nuclear Power, Co., Ltd., Beijing (China); Chinergy Co., Ltd., Beijing (China); vp; ISBN 978-7-89395-349-1;
; 2014; 7 p; HTR2014: 7. International Topical Meeting on High Temperature Reactor Technology; Weihai (China); 27-31 Oct 2014; HTR2014--61423; PROJECT NRF-2014M2A8A2021297; Country of input: International Atomic Energy Agency (IAEA); 16 refs., 6 figs.

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