Utilization of TRISO Fuel with LWR Spent Fuel in Fusion-Fission Hybrid Reactor System

被引:0
作者
Adem Acır
Taner Altunok
机构
[1] Gazi University,Faculty of Technology, Energy Division
[2] Çankaya University,Faculty of Engineering, Department of Industrial Engineering
来源
Journal of Fusion Energy | 2010年 / 29卷
关键词
Hybrid reactor; High burn up; TRISO fuel; LWR spent fuel;
D O I
暂无
中图分类号
学科分类号
摘要
HTRs use a high performance particulate TRISO fuel with ceramic multi-layer coatings due to the high burn up capability and very neutronic performance. TRISO fuel because of capable of high burn up and very neutronic performance is conducted in a D-T fusion driven hybrid reactor. In this study, TRISO fuels particles are imbedded body-centered cubic (BCC) in a graphite matrix with a volume fraction of 68%. The neutronic effect of TRISO coated LWR spent fuel in the fuel rod used hybrid reactor on the fuel performance has been investigated for Flibe, Flinabe and Li20Sn80 coolants. The reactor operation time with the different first neutron wall loads is 24 months. Neutron transport calculations are evaluated by using XSDRNPM/SCALE 5 codes with 238 group cross section library. The effect of TRISO coated LWR spent fuel in the fuel rod used hybrid reactor on tritium breeding (TBR), energy multiplication (M), fissile fuel breeding, average burn up values are comparatively investigated. It is shown that the high burn up can be achieved with TRISO fuel in the hybrid reactor.
引用
收藏
页码:436 / 442
页数:6
相关论文
共 38 条
[1]  
Hussain A(2009)undefined Inform. Tech. J. 8 220-225
[2]  
Xinrong C(2003)undefined J. Nucl. Sci. Tech. 40 22-29
[3]  
Kauchi M(1997)undefined Trans. Am. Nucl. Soc. 77 396-397
[4]  
Shimazu Y(1986)undefined Fusion Technol. 10 84-99
[5]  
Kim MH(1985)undefined Atomkernenergie/Kerntechnik 47 259-266
[6]  
Bae KM(2007)undefined Kerntechnik 72 27-32
[7]  
Kim YJ(2007)undefined J. Fusion Energy 26 293-298
[8]  
Şahin S(2008)undefined Appl. Energy 85 855-866
[9]  
Al-Kusayer TA(2007)undefined Energy Convers. Manag. 48 576-582
[10]  
Abdul Raoof M(2005)undefined SADHANA Acad. Process. Eng. Sci. 30 585-600