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ON THE USE OF REDUCED- MODERATION LWRs FOR TRANSURANIC ISOTOPE BURNING IN THORIUM FUEL-Ⅰ: ASSEMBLY ANALYSIS

机译:降模轻水堆在T燃料的反式同位素燃烧中的应用-Ⅰ:组装分析

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摘要

Multiple recycle of transuranic (TRU) isotopes in thermal reactors results in degradation of the plutonium (Pu) fissile quality with buildup of higher actinides (e.g., Am, Cm, Cf), some of which are thermal absorbers. These phenomena lead to increasing amounts of Pu feed being required to sustain criticality and accordingly larger TRU content in the multirecycled fuel inventory, ultimately resulting in a positive moderator temperature coefficient (MTC) and void reactivity coefficient. Because of the favorable impact fostered by use of thorium (Th) on these coefficients, the feasibility of Th-TRU multiple recycle in reduced-moderation pressurized water reactors (PWRs) and boiling water reactors (BWRs) has been investigated. In this paper, Part Ⅰ of two companion papers, the analysis is limited to a single assembly, with full-core models presented in Part Ⅱ. Spatial separation of TRU from bred uranium is found to greatly improve neutronic performance. A large reduction in moderation is necessary to allow full actinide recycle. This will pose thermal-hydraulic challenges, which are discussed in Part Ⅱ. In addition, the harder neutron spectrum resulting from the reduced moderation also reduces the control rod worth, while there is a neutronic incentive to use increased mechanical shim to maintain a negative MTC. It may therefore be desirable to increase the number of rod cluster control assemblies. Superior burnup is achievable in a reduced-moderation BWR as a larger reduction in moderation is feasible, although the incineration rate is reduced relative to a PWR due to a higher conversion ratio.
机译:热反应堆中超铀(TRU)同位素的多次循环会导致with(Pu)裂变质量的下降,并形成更高的act系元素(例如Am,Cm,Cf),其中一些是热吸收剂。这些现象导致需要更多的Pu进料来维持临界状态,并因此需要在多循环燃料库存中使用更大的TRU含量,最终导致正的缓和剂温度系数(MTC)和空隙反应系数变大。由于使用or(Th)对这些系数产生了有利的影响,因此研究了Th-TRU多次循环在减缓压水反应堆(PWR)和沸水反应堆(BWR)中的可行性。本文是在两篇配套论文的第Ⅰ部分中,分析仅限于单个组件,而在第Ⅱ部分中介绍了全核模型。发现TRU与繁殖铀的空间分离可极大地改善中子性能。为了充分进行act系元素的循环,有必要大幅度降低调节度。这将带来热工液压方面的挑战,这将在第二部分中进行讨论。另外,适度降低导致的较硬的中子谱也降低了控制棒的价值,而中子则有动机使用增加的机械垫片来维持负的MTC。因此,可能期望增加杆组控制组件的数量。尽管由于较高的转化率而使焚烧率相对于PWR降低了,但在减缓的BWR中可以实现优异的燃耗,因为在减缓的BWR中可行的是较大的减少。

著录项

  • 来源
    《Nuclear Technology》 |2014年第2期|127-146|共20页
  • 作者单位

    University of Cambridge, Department of Engineering, Trumpington Street Cambridge CB2 1PZ, United Kingdom;

    University of Cambridge, Department of Engineering, Trumpington Street Cambridge CB2 1PZ, United Kingdom;

    Westinghouse Electric Company LLC, Cranbeny Township, Pennsylvania;

    University of Michigan, Nuclear Engineering and Radiological Sciences, Ann Arbor, Michigan;

    Westinghouse Electric Company LLC, Cranbeny Township, Pennsylvania;

    University of Cambridge, Department of Engineering, Trumpington Street Cambridge CB2 1PZ, United Kingdom;

  • 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 00:43:11

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