
第32卷
第2期
2012年
6月
核科学与工程
Nuclear Science and Engineering
Vol.32
No.2 Jun.2012
聚变裂变混合乏燃料楚烧堆FDS-SFB
燃料循环方案设计与分析陈艳1+2,王明煌1,2,蒋洁琼1,2,FDS团队(1.中国科学院核能安全技术研究所,安徽合肥230031; 2.中国科学技术大学核科学技术学院,安徽合肥230027)
摘要:针对聚变裂变混合乏燃料葵烧雄FDS-SFB(SpentFuelBurner),基于湿法和干法两种后处理技术途径提出了不同的燃料循环方案,并分别对FDS-SFB燃料循环所需的初装资源量、燃料制备和乏燃料后处理能力进行初步质量流分析和可行性初步评估,基于较好殖变和增殖性能的FDS-SFB典型中子学方案的质量流初步分析表明;两种方案燃料循环其所需的初装资源量、燃料制备、乏燃料后处理能力具有初步的可行性。
关键词:混合堆;乏燃料;燃料循环;可行性;质量流
中图分类号:TL249
文章标志码:A
文章编号:0258-0918(2012)02-0175-05
Preliminary design and analysis on nuclear fuel cycle for
fission-fusion hybrid spent fuel burner
CHEN Yan'-, WANG Ming-huang"-*, JIANG Jie-qiongl,FDS Team
(1. Institute of Nuclear Energy Safety Technology , Chinese Academy of Sciences, Hefei of Anhai Prov. , 230031, Chin:
2. School of Nuelear Scienee and Technology, University of Science and Technology of
China, Hefei of Anhui Prov, , 230027, China)
Abstract: A wet-processing-based fuel cycle and a dry-processing were designed for a fission-fusion hybrid spent fuel burner (FDS-SFB). Mass flow of SFB was preliminarily analyzed. The feasibility analysis of initial loaded fuel inventory, recycle fuel fabrication and spent fuel reprocessing were preliminarily evaluated, The results of mass flow of FDS-SFB demonstrated that the initial loaded fuel inventory, recycle fuel fabrication and
spent fuel reprocessing of nuclear fuel cycle of FDS-SFB is preliminarily feasible. Key words: Hybrid reactor; spent fuel, nuclear fuel cycle; feasibility; mass flow
收稿日期:2012-03-22;修图日期:2012-04-10
基金项目:中国科学院知识创新工程重要方向项目(KJCX2-YW-N35),国家ITER计划(2009GB104005)
艳(1986一),女,福建泉州人,硕士研究生,主要从事聚变聚变混合堆料循环分析
作者离介:陈
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