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OPTIMIZATION OF THE THORIUM-URANIUM REGIME IN CANDU HEAVY-WATER REACTORS

机译:坎杜重水反应器中T铀制度的优化

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摘要

Two operating regimes of a heavy-water power reactor operating in a thorium-uranium fuel cycle are examined: accumulation of the required amount of ~(233)U and self-fueling with ~(233)U fuel. The parameters of 10 variants of the core-lattice cells of a heavy-water power reactor are calculated. The lattice spacing is kept constant and the variants differ by the number of channels, containing fuel elements or targets, and the ~(233)U content in ThO_2. Combined channels containing fuel elements and a target at the same time are examined. Preference is given to a cell variant where a cell contains three channels with fuel elements and one channel with targets. For this variant, the fuel burnup is ~8 MW·days/kg. A large increase of the burnup, i.e., decrease of the amount of reprocessed targets, can be achieved by decreasing the minimum reactivity excess and also by changeing and increasing the complexity of the technology. For example, a large effect is expected from using combined fuel assemblies. In so doing, provisions must be made for performing complicated operation of disassembling highly active fuel assemblies consisting of fuel elements and targets.
机译:研究了在-铀燃料循环中运行的重水动力反应堆的两种运行方式:所需量的〜(233)U蓄积和使用〜(233)U燃料自供油。计算了重水动力反应堆堆芯晶格单元的10个变体的参数。晶格间距保持恒定,并且变体因包含燃料元素或目标的通道数量以及ThO_2中〜(233)U含量而异。同时检查包含燃料元素和目标的组合通道。优选一种电池变体,其中电池包含具有燃料元件的三个通道和具有靶标的一个通道。对于该变型,燃料燃耗为〜8 MW·天/ kg。通过减少最小反应过量,以及通过改变和增加技术的复杂性,可以实现燃耗的大大增加,即减少了再加工靶的数量。例如,期望通过使用组合燃料组件产生很大的效果。在这种情况下,必须提供用于执行拆卸由燃料元件和靶组成的高活性燃料组件的复杂操作的措施。

著录项

  • 来源
    《Atomic Energy》 |2006年第5期|p.781-789|共9页
  • 作者单位

    State Science Center of the Russian Federation - Institute of Theoretical and Experimental Physics;

  • 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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