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首页> 外文期刊>European Physical Journal Plus >Extension of the '42-0' approach to ternary fuels and application to a thorium-fed, minor-actinides-burner ADS
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Extension of the '42-0' approach to ternary fuels and application to a thorium-fed, minor-actinides-burner ADS

机译:延长“42-0”的三元燃料和应用于钍喂养,轻微的肺动脉燃烧器广告

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摘要

When dealing with an accelerator-driven system (ADS), fuel cycle performances are a main element to be considered in the design. The higher cost of these systems, relative to critical fast reactors, makes indeed their justification sustainable only in a perspective of serving fuel and waste management strategies. Disposing of a logical scheme, and an analytical frame, for driving the definition of the core configuration so as to target by design the desired performances, might therefore be a cornerstone for fully exploiting the potential of an ADS. In this work, such a logical scheme, originally developed for the case of an ADS fueled with a binary mixture of plutonium and minor actinides, to identify the optimal design of a proliferation resistant core for the transmutation of the minor actinides, is extended to the more general case of ternary fuels -encompassing almost all cases of practical interest. The rationale for the approach is presented and justified, and analytical considerations added for quantitative estimates to be possible. Finally, a practical example of application is presented to a specific case, with rather general driving criteria to show the potential of the presented approach.
机译:在处理加速器驱动系统(广告)时,燃料循环性能是在设计中考虑的主要元素。这些系统相对于关键快速反应堆的成本较高,确实只有在提供燃料和废物管理策略的角度下可持续的理由。处理逻辑方案和分析框架,用于驱动核心配置的定义,以便通过设计所需的性能来靶向,因此可能是用于充分利用广告潜力的基石。在这项工作中,这种逻辑方案最初为用钚和较小的散光的二元混合物提供的ADS的情况开发,以确定较小散光的扩散核心的最佳设计,延伸到更普遍的三元燃料案例 - 几乎所有实际兴趣的案例。提出和合理的方法的理由,并添加了用于定量估计的分析考虑因素。最后,将应用的实际示例呈现给特定情况,具有相当一般的驾驶标准,以显示所提出的方法的潜力。

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  • 来源
    《European Physical Journal Plus》 |2019年第12期|共8页
  • 作者单位

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

    Italian Natl Agcy New Technol Energy &

    Sustainable Econ Dev V Martiri Monte Sole 4 I-40129 Bologna Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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