首页> 外文会议> >Breeding potential of candidate breeders for the US Demo power plant
【24h】

Breeding potential of candidate breeders for the US Demo power plant

机译:美国演示电厂的候选育种者的育种潜力

获取原文

摘要

The US Demo will utilize either liquid metal (LM) or solid breeder (SB) for tritium breeding. A prime goal for the breeder is to provide tritium self-sufficiency that ensures the self-sustaining operation of the Demo plant. Neutronics analysis have been performed for 20 breeders to examine their ability to breed tritium and multiply the neutron energy. A few promising LM (Li and Li/sub 17/Pb/sub 83/) and SB (Li/sub 2/O and Li/sub 2/TiO/sub 3/) were selected for further analysis to illustrate the impact on breeding of the candidate low activation structures (V, SiC, and FS) and neutron multipliers (Be, Be/sub 2/C, BeO, and Pb). Among the various breeders considered in the analysis, lithium provides the highest breeding followed by lithium lead, then Li/sub 2/O. The study has concluded that Li and Li/sub 17/Pb/sub 83/ have the potential for tritium self-sufficiency without a neutron multiplier. Solid breeders will most likely require a neutron multiplier to achieve net breeding in realistic designs. All structures degrade the breeding and enhance the energy multiplication, except SiC which degrades both. Vanadium has the least impact on the breeding of LM and SB, followed by FS and SiC, except for Li/sub 17/Pb/sub 83/. All multipliers significantly enhance the SB breeding, except BeO, and the SB energy multiplication, except Pb. Besides neutronics performance, other features of LM and SB will be key factors in selecting the Demo materials.
机译:美国演示将使用液态金属(LM)或固态育种者(SB)进行tri的育种。育种者的主要目标是提供tri的自给自足,以确保演示工厂的自立运行。已经对20个育种者进行了中子学分析,以检查他们育种tri和繁殖中子能量的能力。选择了一些有前途的LM(Li和Li / sub 17 / Pb / sub 83 /)和SB(Li / sub 2 / O和Li / sub 2 / TiO / sub 3 /)进行进一步分析,以说明对育种的影响候选低活化结构(V,SiC和FS)和中子倍增器(Be,Be / sub 2 / C,BeO和Pb)。在分析中考虑的各种育种者中,锂提供的育种最高,其次是锂铅,其次是Li / sub 2 / O。研究得出的结论是,Li和Li / sub 17 / Pb / sub 83 /在没有中子倍增器的情况下具有tri自给的潜力。固体育种者很可能需要中子倍增器才能在现实设计中实现净育种。除了SiC会使两种结构都退化之外,所有结构都降低了繁殖能力并增强了能量倍增。钒对LM和SB的繁殖影响最小,其次是FS和SiC,除了Li / sub 17 / Pb / sub 83 /。除BeO以外,所有乘数均显着增强SB繁殖,除Pb以外,所有SB能量倍增。除了中子学性能外,LM和SB的其他功能将是选择演示材料的关键因素。

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