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An alternative solution for heavy liquid metal cooled reactors fuel assemblies

机译:重液金属冷却反应堆燃料组件的替代解决方案

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摘要

In the coming future, the electric energy production from nuclear power plants will be provided by both thermal reactors and fast reactors. In order to have a sustainable energy production through fission reactors, fast reactors should provide an increasing contribution to the total electricity production from nuclear power plants. Fast reactors have to achieve economic and technical targets of Generation Ⅳ. Among these reactors, Sodium cooled Fast Reactors (SFRs) and Lead cooled Fast Reactors (LFRs) have the greatest possibility to be developed as industrial power plants within few decades. Both SFRs and LFRs require a great R&D effort to overcome some open issues which affect the present designs (e.g. sodium-water reaction for the SFRs, erosion/corrosion for LFRs, etc.). The present paper is mainly focused on LFR fuel assembly (FA) design: issues linked with the high coolant density of lead or lead-bismuth eutectic cooled reactors have been investigated and an innovative solution for the core mechanical design is here proposed and analyzed. The solution, which foresees cylindrical fuel assemblies and exploits the buoyancy force due to the lead high density, allows to simplify the FAs locking system, to reduce their length and could lead to a more uniform neutron flux distribution.
机译:在不久的将来,核电站的电能生产将同时由热堆和快堆提供。为了通过裂变反应堆实现可持续的能源生产,快速反应堆应为核电站的总发电量提供更大的贡献。快堆必须达到第四代的经济和技术目标。在这些反应堆中,钠冷快堆(SFR)和铅冷快堆(LFR)在几十年内发展为工业发电厂的可能性最大。 SFR和LFR都需要付出巨大的研发努力来克服一些影响当前设计的未解决问题(例如,SFR的钠水反应,LFR的腐蚀/腐蚀等)。本文主要侧重于LFR燃料组件(FA)设计:已经研究了与铅或铅铋共晶冷却反应堆的高冷却剂密度有关的问题,并在此提出并分析了用于核心机械设计的创新解决方案。该解决方案可预见圆柱形燃料组件并利用铅高密度产生的浮力,从而简化了FAs锁定系统,缩短了其长度,并可能导致中子通量分布更加均匀。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2014年第10期|503-514|共12页
  • 作者单位

    'SAPIENZA' University of Rome - DIAEE, Corso Vittorio Emanuele Ⅱ,244, 00186 Rome, Italy;

    'SAPIENZA' University of Rome - DIAEE, Corso Vittorio Emanuele Ⅱ,244, 00186 Rome, Italy;

    'SAPIENZA' University of Rome - DIAEE, Corso Vittorio Emanuele Ⅱ,244, 00186 Rome, Italy;

    'ENEA', Via Martiri di Monte Sole 4,40129 Bologna, Italy;

    'SAPIENZA' University of Rome - DIAEE, Corso Vittorio Emanuele Ⅱ,244, 00186 Rome, Italy;

    'SRS Engineering Design S.r.l.', Vicolo delle Palle 25-25/b, 00186 Rome, Italy;

    'SAPIENZA' University of Rome - DIAEE, Corso Vittorio Emanuele Ⅱ,244, 00186 Rome, Italy;

  • 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
  • 关键词

  • 入库时间 2022-08-18 00:43:10

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