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Reactivity control schemes for fast spectrum space nuclear reactors

机译:快速光谱空间核反应堆的反应性控制方案

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摘要

Several reactivity control schemes are considered for future space nuclear reactor power systems. Each of these control schemes uses a combination of boron carbide absorbers and/or beryllium oxide reflectors to achieve sufficient reactivity swing to keep the reactor subcritical during launch and to provide sufficient excess reactivity to operate the reactor over its expected 7-15 year lifetime. The size and shape of the control system directly impacts the size and mass of the space reactor's reflector and shadow shield, leading to a tradeoff between reactivity swing and total system mass. This paper presents a trade study of drum, shutter, slat, and petal control schemes based on reactivity swing and mass effects for a representative fast-spectrum, gas-cooled reactor. For each control scheme, the dimensions and composition of the core are constant, and the reflector is sized to provide $5 of cold-clean excess reactivity with each configuration in its most reactive state. Reactivity insertion behavior is analyzed for each control scheme, along with the submersion behavior following a launch abort. The advantages and disadvantages of each configuration are discussed, along with optimization techniques and novel geometric approaches for each scheme.
机译:对于未来的空间核反应堆动力系统,考虑了几种反应性控制方案。这些控制方案中的每一个都使用碳化硼吸收剂和/或氧化铍反射器的组合,以实现足够的反应性摆动,以在发射期间将反应器保持在亚临界状态,并提供足够的过量反应性,以在反应器预期的7-15年寿命内运行。控制系统的大小和形状直接影响空间反应堆的反射器和荫罩的大小和质量,从而在反应性摆动和系统总质量之间进行权衡。本文介绍了基于反应性摆动和质量效应的鼓风,百叶窗,板条和花瓣控制方案的行业研究,该方案​​是代表性的快速光谱气冷反应堆。对于每种控制方案,纤芯的尺寸和组成都是恒定的,并且反射器的尺寸可为每种配置处于最反应状态的情况下提供$ 5的冷清洁多余反应性。分析每个控制方案的反应性插入行为,以及发射中止后的浸入行为。讨论了每种配置的优缺点,以及每种方案的优化技术和新颖的几何方法。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2011年第5期|p.1516-1528|共13页
  • 作者单位

    Nuclear Science and Engineering Program, Metallurgical and Materials Engineering Department, Colorado School of Mines, Golden, CO 80401, USA;

    Nuclear Science and Engineering Program, Metallurgical and Materials Engineering Department, Colorado School of Mines, Golden, CO 80401, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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