首页> 外文期刊>Nuclear Technology >EVALUATION OF LONG-LIFE TRANSURANICS BREAKEVEN AND BURNER CORES FOR WASTE MINIMIZATION IN A PB-GCFR FUEL CYCLE
【24h】

EVALUATION OF LONG-LIFE TRANSURANICS BREAKEVEN AND BURNER CORES FOR WASTE MINIMIZATION IN A PB-GCFR FUEL CYCLE

机译:PB-GCFR燃料循环中最小化废物的长寿命超临界和燃烧器芯的评估

获取原文
获取原文并翻译 | 示例
           

摘要

Transuranics (TRU) breakeven and burner core designs have been studied for the Pebble-Bed Gas-Cooled Fast Reactor (PB-GCFR), which was developed under a 2-yr U.S. Department of Energy Nuclear Energy Research Initiative project. The issues of minimizing waste production, fuel cost, and burnup reactivity swing, and maximizing TRU burning have been investigated primarily from a neutronics viewpoint. For TRU breakeven cores, it was found that for the given core power [300 MW(thermal)] and power density (50 MW/m~3), the lowest amount of radiotoxic TRU to be processed is obtained for a long-life (single-batch) core of 30-yr duration. Minimizing the TRU processed results in a minimization of the TRU losses that ultimately will have to be entombed in a geologic repository. The results show that the single-batch, long-life PB-GCFR could be designed to operate over a wide range of cycle lengths and fuel loadings. By modifying the TRU feed to have a higher minor actinide (MA) fraction than contained in light water reactor spent fuel, the burnup reactivity swing for the long-life core can be reduced significantly. With this approach, it is also possible to configure the long-life PB-GCFR core as a TRU burner using nonuranium fuel. A nonuranium fuel PB-GCFR with 24% plutonium and 76% MAs can operate for 17 full-power years and achieve 25% burnup with a reactivity swing of 3%Δk.
机译:已针对卵石床气冷快堆(PB-GCFR)研究了Transuranics(TRU)收支平衡和燃烧器核心设计,该反应堆是在美国能源部能源核能研究计划两年的项目下开发的。主要从中子学的角度研究了使废物产生,燃料成本和燃尽反应性波动最小化以及使TRU燃烧最大化的问题。对于TRU收支平衡的铁芯,发现对于给定的铁芯功率[300 MW(热)]和功率密度(50 MW / m〜3),对于长寿命,获得的放射毒性TRU量最低(单批)核心,期限为30年。将TRU处理量最小化可以使TRU损失最小化,最终必须将其埋入地质资料库中。结果表明,单批,长寿命PB-GCFR可以设计为在较宽的循环长度和燃料负荷范围内运行。通过将TRU进料改性为比轻水反应堆乏燃料中所含的次要act系元素(MA)更高,可以显着降低长寿命堆芯的燃耗反应性波动。通过这种方法,也可以将长寿命的PB-GCFR芯配置为使用非铀燃料的TRU燃烧器。具有24%and和76%MA的非铀燃料PB-GCFR可以运行17满功率年,并实现25%燃耗,反应性波动为3%Δk。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号