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Effect of TRU fuel loading on core performance and plutonium production of FBR

机译:TRU燃料装载量对FBR核心性能和p生产的影响

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摘要

The effect of trans-uranium (TRU) fuel loading on the reactor core performances as well as the actinide and isotopic plutonium compositions in the core and blanket regions has been analyzed based on the large FBR type. Isotopic plutonium composition of TRU fuel is less than that of MOX fuel except for Pu-238 composition which obtains relatively higher composition. A significant increase of plutonium vector composition is shown by Pu-238 for TRU fuel in the core region as well as its increasing value in the blanket region for doping MA case. Excess reactivity can be reduced significantly (5% at beginning of cycle) and an additional breeding gain can be obtained by TRU fuel in comparison with MOX fuel. Doping MA in the blanket regions reduces the criticality for a small reduction value (0.1%) and it gives a reduction value of breeding ratio. Loading MA in the core regions as TRU fuel composition gives relatively bigger effect to increase the void reactivity coefficient mean while it gives less effect for loading MA in the blanket regions. Similar to the void reactivity coefficient profile, loading MA is more effective to the change of Doppler coefficient in the core regions in comparison with loading MA in the blanket regions which gives slightly less negative Doppler coefficient. Obtained Pu-240 vector compositions in the core region are categorized as practically unusable composition for nuclear device based on the Pellaud's criterion. Less than 7% Pu-240 vector compositions in the blanket region are categorized as weapon grade composition for no doping MA case. Obtaining 9% of Pu-238 composition by doping MA 2% in the blanket regions is enough to increase the level of proliferation resistance for denaturing plutonium based on the Kessler's criterion.
机译:基于大型FBR类型,分析了反铀(TRU)燃料装载量对反应堆堆芯性能以及堆芯和覆盖区中act系元素和同位素p组成的影响。除获得相对较高组成的Pu-238组成外,TRU燃料的同位素p组成小于MOX燃料。 Pu-238对于核心区域中的TRU燃料显示出vector载体组成的显着增加,并且在掺杂MA情况下,其在覆盖区域中的值也有所增加。与MOX燃料相比,TRU燃料可显着降低过量反应性(在循环开始时降低5%),并获得额外的繁殖收益。在毯覆区域中掺杂MA会降低小降低值(0.1%)的临界度,并且会降低繁殖率。在TRU燃料成分中将MA加载到核心区域中会产生相对较大的效果,以增加空隙反应系数平均值,而对于在毯覆区域中加载MA则将产生较小的影响。与空隙反应系数分布相似,负载MA对核心区域中多普勒系数的变化比毯状区域中负多普勒系数的覆盖区域更有效。根据Pellaud准则,将核心区域中获得的Pu-240矢量成分归类为核设备实际上不可用的成分。对于无掺杂MA情况,覆盖区域中少于7%的Pu-240矢量成分被归为武器级成分。通过在覆盖区域掺杂2%的MA来获得9%的Pu-238成分,足以根据Kessler准则提高使for变性的抗扩散能力。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2011年第1期|p.101-117|共17页
  • 作者单位

    Nuclear Nonproliferation Science and Technology Center (NPSTC), Japan Atomic Energy Agency (JAEA), 2-4 Shirane, Shirakata, Tokai-mura, Naka, Ibaraki 319-1195, Japan;

    Nuclear Nonproliferation Science and Technology Center (NPSTC), Japan Atomic Energy Agency (JAEA), 2-4 Shirane, Shirakata, Tokai-mura, Naka, Ibaraki 319-1195, Japan;

    Nuclear Nonproliferation Science and Technology Center (NPSTC), Japan Atomic Energy Agency (JAEA), 2-4 Shirane, Shirakata, Tokai-mura, Naka, Ibaraki 319-1195, Japan, Research Laboratory for Nuclear Reactors (RLNR), Tokyo Institute of Technology (Tokyo Tech), Japan;

  • 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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  • 入库时间 2022-08-18 00:44:31

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