首页> 外文期刊>Nuclear science and engineering >Critical Mass and Subcritical Experiments Interlaced with Nb-1Zr, Re, Mo, Ta-2.5W Fueled with Highly Enriched Uranium in Support of the Prometheus Project
【24h】

Critical Mass and Subcritical Experiments Interlaced with Nb-1Zr, Re, Mo, Ta-2.5W Fueled with Highly Enriched Uranium in Support of the Prometheus Project

机译:支持Prometheus项目的Nb-1Zr,Re,Mo,Ta-2.5W燃料与高浓缩铀交织的临界质量和亚临界实验

获取原文
获取原文并翻译 | 示例
       

摘要

The National Aeronautics and Space Administration is considering nuclear power sources for space exploration. A series of critical mass experiments was designed to address the development, performance, and design of a space nuclear reactor being considered to support the Prometheus project. These experiments consisted of interlacing the refractory metals rhenium (Re), molybdenum (Mo), tantalum-2.5 wt% tungsten (Ta-2.5W), and niobium-1 wt% zirconium (Nb-1Zr) with moderating materials (graphite or polyethylene) and were fueled by highly enriched uranium plates. These experiments are designed to assess the adequacy of and uncertainty in refractory metal neutron cross-section evaluations for use in Prometheus nuclear reactor design work. The critical experiments were designed in the energy spectrum closely resembling or bracketing that in the proposed space reactor. For each material (Re, Mo, Ta-2.5W and Nb-1Zr), four critical configurations were designed and performed to measure the sensitivity of k_(eff) to the material under four different and progressively softer neutron spectra (core center spectrum, harder than core average spectrum, softer than core average spectrum, and accident flooded spectrum). The thicknesses of the graphite or polyethylene moderator and reflector plates were adjusted to achieve the desired neutron spectrum. One critical and 18 subcritical experiments provided for measurements of material neutronic behavior in a simple cylindrical geometry configuration that was modeled in MCNP with ENDF/B-VI.6 cross-section data and compared to the extrapolated or predicted critical mass for all the experiments. These experiments were performed at the Los Alamos National Laboratory using the Planet vertical lift critical assembly at the Los Alamos Critical Experiment Facility.
机译:国家航空航天局正在考虑将核动力源用于太空探索。设计了一系列关键的质量实验,以解决正在考虑支持普罗米修斯项目的空间核反应堆的开发,性能和设计。这些实验包括将耐火金属rh(Re),钼(Mo),钽-2.5 wt%的钨(Ta-2.5W)和铌-1 wt%的锆(Nb-1Zr)与缓和材料(石墨或聚乙烯)交织在一起),并由高浓缩铀板提供燃料。这些实验旨在评估用于普罗米修斯核反应堆设计工作的难熔金属中子截面评估的充分性和不确定性。关键实验是在能谱中设计的,该能谱与拟议中的空间反应堆的能谱非常相似或用括号包围。对于每种材料(Re,Mo,Ta-2.5W和Nb-1Zr),设计并执行了四个关键配置,以测量在四个不同且逐渐软化的中子光谱(核心中心光谱,比核心平均频谱更硬,比核心平均频谱更软以及事故淹没频谱)。调节石墨或聚乙烯减速器和反射器板的厚度以获得所需的中子光谱。一个关键实验和18个次临界实验提供了在简单的圆柱形几何结构中测量材料中子行为的方法,该模型在MCNP中使用ENDF / B-VI.6横截面数据进行建模,并与所有实验的外推或预测临界质量进行了比较。这些实验是在洛斯阿拉莫斯国家实验室使用洛斯阿拉莫斯关键实验设施的行星垂直举升关键组件进行的。

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