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Design of a sodium-cooled epithermal long-term exploration nuclear engine

机译:一种钠冷热液长期探测核发动机的设计

摘要

To facilitate the mission to Mars initiative, the current work has focused on conceptual designs for transformational and enabling space nuclear reactor technologies. A matrix of design alternatives for both the reactor core and the power conversion unit were considered. Based on a preliminary screening of technologies using simplified analyses, a conceptual design was established for more detailed design work. The boiling sodium Rankine cycle was selected for the power conversion unit, and the reactor core is an ultra high power density core with highly enriched uranium fuel. The sodium Rankine cycle has many advantages, lending to a highly efficient radiator and compact reactor core. The sodium- cooled, epithermal long-term exploration nuclear engine (SELENE) is designed to be scalable to meet many differing mission requirements. The SELENE core is a comprised of Nb-lZr clad, lead bonded, UC plates in a honeycomb pattern. The fuel plates are arranged into a rectangular grid, roughly 25cm on each end. The fuel is in two zones, one is 97 a/o enriched in ²³⁵U and the other is 70 a/o enriched in ²³⁵U. The core is a fast spectrum reactor, BeO reflected, and ex-core controlled.
机译:为了促进执行“火星计划”的任务,目前的工作集中在用于转化和启用太空核反应堆技术的概念设计上。考虑了反应堆堆芯和功率转换单元的设计替代方案矩阵。在使用简化分析对技术进行初步筛选的基础上,建立了用于更详细设计工作的概念设计。选择沸腾的钠朗肯循环钠作为动力转换装置,反应堆堆芯是具有高浓缩铀燃料的超高功率密度堆芯。朗肯钠循环具有许多优点,可提供高效的散热器和紧凑的反应堆堆芯。钠冷却的超热长期勘探核发动机(SELENE)设计为可扩展的,可以满足许多不同的任务要求。 SELENE磁芯由呈蜂窝状的Nb-lZr包覆,铅键合UC板组成。燃料板排列成矩形网格,两端大约25厘米。燃料分为两个区域,一个区域富含97 U / O的铀,另一个区域富含70 A / O的铀的U。核心是一个快速光谱反应堆,被BeO反射,并且由前核心控制。

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  • 作者

    Yarsky Peter;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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