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Thermal-hydraulic and neutronic analyses of the submersion-subcritical, safe space (S~4) reactor

机译:沉入亚临界安全空间(S〜4)反应堆的热工和中子分析

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摘要

The solid-core Submersion-Subcritical Safe Space (S~4) reactor is cooled with He-28% Xe gas (molecular weight of 40 g/mole) and nominally generates 471 kWth for at least 7 years. To avoid single point failures in reactor cooling and energy conversion, the S~4 reactor core is divided into three hydraulically independent, but neutronically and thermally coupled sectors. Each sector feeds a separate Closed Brayton Cycle (CBC) power conversion loop with separate heat rejection radiator panels. Detailed thermal-hydraulic analyses of the S~4 reactor core are performed to ensure that the maximum fuel temperature during nominal operation stays below 1300 K. In addition, a neutronics analysis performed using MCNP 5 confirms that the S~4 reactor satisfies the design reactivity requirements. These are at least $ 4 of cold clean excess reactivity, at least $ 2.25 of shutdown margin, and at least $ 1 subcritical in the worst-case of submersion and flooding, following a launch abort accident. Mass estimates of the S~4 reactor design that meets both the thermal and the reactivity requirements are provided.
机译:固核沉入亚临界安全空间(S〜4)反应堆用He-28%氙气(分子量为40 g / mole)冷却,名义上产生471 kWth的功率至少持续7年。为了避免反应堆冷却和能量转换中的单点故障,S〜4反应堆堆芯分为三个液压独立的单元,但通过中子和热耦合。每个扇区为单独的封闭式布雷顿循环(CBC)功率转换回路供电,并带有单独的散热散热器面板。对S〜4反应堆堆芯进行了详细的热工液压分析,以确保标称运行期间的最高燃料温度保持在1300 K以下。此外,使用MCNP 5进行的中子学分析证实S〜4反应堆满足设计反应性要求。这些是在发射中止事故之后,至少有$ 4的冷清洁过量反应性,至少$ 2.25的关闭裕度以及在最坏的情况下淹没和淹没的亚临界1美元。提供了满足热和反应性要求的S〜4反应堆设计的质量估算。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2009年第12期|2809-2819|共11页
  • 作者单位

    Nuclear Science and Engineering Program, Colorado School of Mines, 1500 Illinois St., Golden, CO 80401, USA;

    Institute for Space and Nuclear Power Studies and 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
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