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A correction method for RAPID fission matrix calculations with control rod movement

机译:控制棒运动的RAPID裂变矩阵计算的一种校正方法

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摘要

The RAPID radiation transport code, based on a fission matrix combination method, was initially designed for spent fuel systems but has been applied on reactor core neutronics analysis. To improve the accuracy of the RAPID fission-matrix approach, a ratio correction method has been applied to the reflector region and for heterogeneous adjacent assembly types. The RAPID code has been tested on a modified BEAVRS benchmark at hot zero power condition without control rods, and reports accurate results (similar to 0.52% 2-D, pin-wise RMS error with similar to 25 pcm K-eff difference compared to a Serpent 2 reference). In this paper, we apply the assembly correction to rodded assemblies on different control rod bank worth calculations, as well as separate ratios on different slices in order to solve for the partially inserted control rod problems. It is shown that RAPID is able to estimate the control rod worth for different banks (a maximum 37 pcm error and most within 20 pcm). RAPID can also perform calculations on a partially inserted control rod case, reporting a maximum control rod worth error of 17 pcm across some insertion levels of bank D. In addition, another type of correction ratio method is proposed, namely the "localized" ratio. It makes use of sets of four-assembly fission matrices from criticality calculations and allows the choice of any fission source in ratio generation. It greatly reduces the errors located near large source gradient locations, which was observed with the "multiplied" correction ratio since it always assumes a uniform source.
机译:基于裂变矩阵组合方法的RAPID辐射传输代码最初是为乏燃料系统设计的,但已应用于反应堆堆芯中子学分析。为了提高RAPID裂变矩阵方法的精度,比率校正方法已应用于反射器区域和异质相邻组件类型。 RAPID代码已在改良的BEAVRS基准上在无控制棒的热零功率条件下进行了测试,并报告了准确的结果(类似于0.52%的2-D,逐针RMS误差,相差25 pcm的K-eff相比)。蛇2参考)。在本文中,我们将装配校正应用于不同控制杆组值计算中的杆件装配,以及不同切片上的单独比率,以解决部分插入的控制杆问题。结果表明,RAPID能够估算出不同堤岸的控制杆价值(最大误差为37 pcm,大多数误差在20 pcm之内)。 RAPID还可以在部分插入的控制杆情况下执行计算,报告在D组的某些插入水平上的最大控制杆值误差为17 pcm。此外,提出了另一种校正比率方法,即“局部”比率。它利用临界计算中的四组裂变矩阵集,并允许在比率生成中选择任何裂变源。它可以大大降低位于大源梯度位置附近的误差,这是通过“乘以”校正率观察到的,因为它始终采用统一的源。

著录项

  • 来源
    《Progress in Nuclear Energy》 |2020年第3期|103226.1-103226.11|共11页
  • 作者

  • 作者单位

    Penn State Univ Dept Nucl Engn 231 Sackett Bldg University Pk PA 16802 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RAPID; Fission matrix; Control rod worth calculation;

    机译:快速;裂变矩阵控制杆价值计算;

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