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Submersion-Subcritical Safe Space (S~4) reactor

机译:浸入式亚临界安全空间(S〜4)反应堆

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摘要

The Submersion-Subcritical Safe Space (S~4) reactor, developed for future space power applications and avoidance of single point failures, is presented. The S~4 reactor has a Mo-14% Re solid core, loaded with uranium nitride fuel, cooled by He-30% Xe and sized to provide 550 kWth for 7 years of equivalent full power operation. The beryllium oxide reflector of the S~4 reactor is designed to completely disassemble upon impact on water or soil. The potential of using Spectral Shift Absorber (SSA) materials in different forms to ensure that the reactor remains subcritical in the worst-case submersion accident is investigated. Nine potential SS As are considered in terms of their effect on the thickness of the radial reflector and on the combined mass of the reactor and the radiation shadow shield. The SSA materials are incorporated as a thin (0.1 mm) coating on the outside surface of the reactor core and as core additions in three possible forms: 2.0 mm diameter pins in the interstices of the core block, 0.25 mm thick sleeves around the fuel stacks and/or additions to the uranium nitride fuel. Results show that with a boron carbide coating and 0.25 mm iridium sleeves around the fuel stacks the S~4 reactor has a reflector outer diameter of 43.5 cm with a combined reactor and shadow shield mass of 935.1 kg. The S~4 reactor with 12.5 at. % gadolinium-155 added to the fuel, 2.0 mm diameter gadolinium-155 sesquioxide interstitial pins, and a 0.1 mm thick gadolinium-155 sesquioxide coating has a slightly smaller reflector outer diameter of 43.0 cm, resulting in a smaller total reactor and shield mass of 901.7kg. With 8.0 at. % europium-151 added to the fuel, along with europium-151 sesquioxide for the pins and coating, the reflector's outer diameter and the total reactor and shield mass are further reduced to 41.5 cm and 869.2 kg, respectively.
机译:介绍了专为未来空间动力应用和避免单点故障而开发的沉入亚临界安全空间(S〜4)反应堆。 S〜4反应堆具有Mo-14%Re实心核,装有氮化铀燃料,用He-30%Xe冷却,大小可提供550 kWth的功率,可等效运行7年。 S〜4反应器的氧化铍反射器设计用于在撞击水或土壤时完全分解。研究了使用不同形式的光谱偏移吸收器(SSA)材料以确保反应器在最坏情况下的浸没事故中仍处于亚临界状态的潜力。考虑到九种电位SS As对径向反射器的厚度以及对反应堆和辐射荫罩总质量的影响。 SSA材料以薄(0.1 mm)涂层的形式结合在反应堆堆芯的外表面上,并作为堆芯的添加以三种可能的形式出现:堆芯块间隙中的直径为2.0 mm的销钉,围绕燃料堆的0.25 mm厚的套筒和/或添加到氮化铀燃料中。结果表明,在燃料堆周围具有碳化硼涂层和0.25 mm铱套的情况下,S〜4反应堆的反射器外径为43.5 cm,反应堆和荫罩的总质量为935.1 kg。 12.5 at。的S〜4反应器添加到燃料中的%-155,直径2.0毫米的-155倍半氧化物间隙针和0.1毫米厚的thick155倍半氧化物涂层具有稍小的反射器外径43.0厘米,从而使总反应堆和护罩质量更小901.7公斤与8.0 at。添加到燃料中的151百分比,以及用于销和涂层的151 151倍半氧化物,反射器的外径以及反应堆和防护罩的总质量分别进一步减小到41.5厘米和869.2千克。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2006年第17期|p.1759-1777|共19页
  • 作者单位

    Institute for Space and Nuclear Power Studies, Chemical and Nuclear Engineering Department, University of New Mexico, Albuquerque, NM 87131, 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 原子能技术;
  • 关键词

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