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A Method for the Adaptive Selection of Angular Flux Expansion Orders in the Coarse Mesh Radiation Transport (COMET) Method

机译:粗网格辐射传输(COMET)方法中角通量展开阶数的自适应选择方法

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摘要

This paper presents a formulation for a method for the adaptive selection of angular flux expansion orders for use in COarse MEsh radiation Transport (COMET) method solutions to whole-core reactor problems. An important aspect of the COMET method is an assumed angular flux expansion on mesh interfaces. Previously, this expansion was held constant throughout a problem. However, the adaptive method described in this paper chooses the angular flux expansions automatically and allows them to vary between meshes. To demonstrate the method, a pressurized water reactor benchmark problem with UO_2 and mixed oxide fuel assemblies is solved. Three different configurations for different insertions of control rods were considered. For all configurations, the agreement between the standard and adaptive COMET solutions was excellent, with eigenvalue agreement being 2 pcm or less and average pin fission errors never exceeding 0.1%. Increases in computational efficiency by factors of 2 to 2.6 were observed over standard COMET solutions employing the full flux expansion considered in the problem. In addition, a lower flux expansion suggested by literature as well as the results of the adaptive calculation was used in the standard COMET method to solve the problem. The adaptive COMET solution has a run time similar to this lower expansion, which is to be expected since many of the flux expansions chosen with the adaptive method match this lower flux expansion. The results of this study are encouraging and imply that adaptive COMET solutions improve upon the standard method by increasing computational efficiency when a flux expansion is used that is higher than required for desired accuracy. The method also limits the need for intuition and numerical experimentation in achieving flux expansions that result in COMET calculations that achieve satisfactory accuracy.
机译:本文提出了一种用于角通量膨胀阶数的自适应选择方法的公式,该方法可用于解决全堆反应堆问题的粗网格水声传输(COMET)方法。 COMET方法的一个重要方面是在网格界面上假定的角通量扩展。以前,这种扩展在整个问题中一直保持不变。但是,本文描述的自适应方法会自动选择角通量扩展,并允许它们在网格之间变化。为了证明该方法,解决了带有UO_2和混合氧化物燃料组件的压水堆基准问题。考虑了针对控制杆的不同插入的三种不同构造。对于所有配置,标准解决方案和自适应COMET解决方案之间的一致性都非常好,特征值一致性为2 pcm或更小,平均引脚裂变误差不会超过0.1%。与使用问题中考虑的全通量膨胀的标准COMET解决方案相比,观察到的计算效率提高了2到2.6倍。此外,在标准的COMET方法中,使用了文献中建议的较低的磁通膨胀以及自适应计算的结果来解决该问题。自适应COMET解决方案的运行时间与此较低的膨胀相似,这是可以预期的,因为使用自适应方法选择的许多磁通膨胀都与较低的磁通膨胀匹配。这项研究的结果令人鼓舞,并暗示当使用的通量膨胀量高于所需精度时,自适应COMET解决方案通过提高计算效率来改进标准方法。该方法还限制了直觉和数值实验的需要,以实现导致COMET计算达到令人满意的精度的磁通量扩展。

著录项

  • 来源
    《Nuclear science and engineering》 |2016年第2期|161-172|共12页
  • 作者

    Kyle Remley; Farzad Rahnema;

  • 作者单位

    Georgia Institute of Technology, 770 State Street NW, Room 3-39S, Atlanta, Georgia 30318;

    Georgia Institute of Technology, 770 State Street NW, Room 3-39S, Atlanta, Georgia 30318;

  • 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

    Adaptive expansion; COMET; coarse mesh radiation transport;

    机译:自适应扩展彗星;粗网孔辐射传输;
  • 入库时间 2022-08-18 00:42:34

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