The success of high temperature gas cooled reactor depends upon the safety and quality of the coated particle fuel. The understanding and evaluation of this fuel requires the development of an integrated mechanistic fuel performance model that fully describes the mechanical and physicochemical behavior of the fuel particle under irradiation. In this paper, a review of the analytical capability of some of the existing computer codes for coated particle fuel was performed. These existing models and codes include FZJ model, JAERI model, Stress3 model, ATLAS model, PARFUME model and TIMCOAT model. The theoretic model, methodology, calculation parameters and benchmark of these codes were classified. Based on the failure mechanism of coated particle, the advantage and limits of the models were compared and discussed. The calculated results of the coated particles for China HTR-10 by using some existing code are shown. Finally, problems and challenges in fuel performance modeling were listed.
参考文献
[1] | Homan F;Nabielek H;Yang L.Low enriched fuel performance review[M].,1978 |
[2] | Stansfield O M et al.Interaction of fission products and SiC in Triso fuel particles:a limiting HTGR design parameter[Z].GA-A 17183 |
[3] | Verfondern K;Sumita J;Ueta S et al.Modeling of fuel performance and metallic fission product release behavior during HTTR normal operating conditions[J].Nuclear Engineering and Design,2001,210:225. |
[4] | Mayeul Phélip;Frédéric Michel;Michel Pelletier.The ATLAS HTR fuel simulation code objectives,description and first results[A].北京,2004:B03. |
[5] | Degeneve G .HTR-F project-deliverable N13 atlas first calculations[Z].SESC/LIAC 03-019,2003. |
[6] | Stress3 and Staple:Codes to Model Particulate Fuel Behaviour[Z].SA/PSSD/ PROP /2606,2002. |
[7] | Kazuhiro SAWA;Shouhei UETA;Junya SUMITA .Prediction of Fuel Performance and Fission Gas Release Behavior during Normal Operation of the High Temperature Engineering Test Reactor by JAERI and FZJ Modeling Approach[J].Journal of Nuclear Science and Technology,2001(6):411-419. |
[8] | Sawa K.;Minato K.;Fukuda K.;Shiozawa S. .DEVELOPMENT OF A COATED FUEL PARTICLE FAILURE MODEL UNDER HIGH BURNUP IRRADIATION[J].Journal of Nuclear Science and Technology,1996(9):712-720. |
[9] | Kazuhiro Sawa;Shusaku Shiozawa;Kousaku Fukuda et al.Verification of fission product release model form high temperature engineering test reactor fuel[J].Journal of Nuclear Science and Technology,1992,29(09):842. |
[10] | Miller G K;Maki J T;Knudson D L.Current Capabilities of the Fuel Performance Modeling Code Parfume[A].北京,2004:B10. |
[11] | Wang J;Ballinger Ronald G;Diecker Jane T.Design optimization and analysis of coated particle fuel using advanced fuel performance modeling techniques[A].北京,2004:B22. |
[12] | Wang J;Ballinger R G.An integrated fuel performance model for the modular pebble bed reactor[A].Reno,Nevada,2001 |
[13] | Wang J;Ballinger R G.A fracture mechanics based failure model for TRISO fuel particles[A].Reno,Nevada,2001 |
[14] | Wang J;Ballinger R G.The effect of design and uncertainty on coated particle fuel reliability[A].San Diego,2003:1. |
[15] | Tang Chunhe;Fu Xiaoming;Zhu Junguo.The behavior of htr-10 fuel under irradiation[A].北京,2004:B11. |
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