...
首页> 外文期刊>Energy Conversion & Management >Space nuclear reactor power system concepts with static and dynamic energy conversion
【24h】

Space nuclear reactor power system concepts with static and dynamic energy conversion

机译:具有静态和动态能量转换的空间核反应堆动力系统概念

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Nuclear reactor power systems could revolutionize space exploration and support human outpost on the Moon and Mars. This paper reviews current static and dynamic energy conversion technologies for use in space reactor power systems and provides estimates of the system's net efficiency and specific power, and the specific area of the radiator. The suitable combinations of the energy conversion tech-nologies and the nuclear reactors, classified based on the coolant type and cooling method, for best system performance and highest spe-cific power, are also discussed. In addition, four space reactor power system concepts with both static and dynamic energy conversion are presented. These systems concepts are for nominal electrical powers up to 110 kW_e and have no single point failures in reactor cooling, energy conversion and heat rejection. Two power systems employ liquid metal heat pipes cooled reactors, thermoelectric (TE) and alkali-metal thermal-to-electric conversion (AMTEC) units for converting the reactor power to electricity, and potassium heat pipes radiators. The third power system employs SiGe TE converters and a liquid metal cooled reactor, with a core divided into six identical sectors. Each sector has a separate energy conversion loop, a heat rejection loop, and a rubidium heat pipes radiator panel. The fourth power system has a gas cooled reactor, with a sectored core. Each of the three sectors in the core is coupled to a separate closed Brayton cycle (CBC) loop with He-Xe (40 g/mol) working fluid and a NaK-78 secondary loop, and two separate water heat pipes radiator panels.
机译:核反应堆动力系统可能会彻底改变太空探索并支持月球和火星上的人类前哨基地。本文回顾了用于空间反应堆电力系统的当前静态和动态能量转换技术,并提供了系统的净效率和比功率的估计值,以及散热器的特定面积。还讨论了基于冷却剂类型和冷却方法分类的能量转换技术和核反应堆的适当组合,以实现最佳系统性能和最高特定功率。此外,还提出了同时具有静态和动态能量转换的四个空间反应堆功率系统概念。这些系统概念适用于额定功率高达110 kW_e的电,并且在反应堆冷却,能量转换和散热方面没有单点故障。两个电力系统采用液态金属热管冷却反应堆,热电(TE)和碱金属热电转换(AMTEC)单元(用于将反应堆的电力转换为电能)和钾热管散热器。第三个电源系统采用SiGe TE转换器和液态金属冷却电抗器,磁芯分为六个相同的扇区。每个扇区都有一个单独的能量转换回路,一个散热回路和一个heat热管散热器面板。第四电力系统具有带扇形堆芯的气冷堆。堆芯中的三个扇区中的每个扇区都耦合到一个单独的封闭式布雷顿循环(CBC)回路,该回路具有He-Xe(40 g / mol)工作流体和一个NaK-78二级回路,以及两个独立的水热管散热器面板。

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