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Criticality calculations of the HTR-10 pebble-bed reactor with SCALE6/ CSAS6 and MCNP5

机译:使用SCALE6 / CSAS6和MCNP5的HTR-10卵石床反应器的临界计算

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摘要

HTR-10 is a 10 MWt prototype pebble-bed reactor (PBR) that presents a doubly heterogeneous geometry for neutronics calculations. An appropriate unit-cell treatment for the associated fuel elements is vital for creating problem-dependent multigroup cross sections. Considering four unit-cell options for resonance self-shielding correction in SCALE6, a series of HTR-10 core models were established using the CSAS6 sequence to systematically investigate how they affected the computational accuracy and efficiency of PBR criticality calculations. Three core configurations, which ranged from simplified infinite lattices to a detailed geometry, were examined. Based on the same ENDF/B-Ⅶ.0 cross-section library, multigroup results were evaluated by comparing with continuous-energy SCALE6/CSAS6 and MCNP5 calculations. The comparison indicated that the INFHOMMEDIUM results overestimated the effective multiplication factor (K_(eff)) by about 2800 pcm, whereas the LATTICECELL and MULTIREGION treatments overestimated k_(eff) values with similar biases at approximately 470-680 pcm. The DOUBLEHET results attained further improvement, reducing the K_(eff) overestimation to approximately 280 pcm. The comparison yielded two unexpected problems from using SCALE6/CSAS6 in HTR-10 criticality calculations. In particular, the continuous-energy CSAS6 calculations in this study present a non-negligible discrepancy with MCNP5, potentially causing a k_(eff) value overestimate of approximately 680 pcm. Notably, using a cell-weighted mixture instead of an explicit model of individual TRISO particles in the pebble fuel zone does not shorten the CSAS6 computation time in the high-fidelity HTR-10 model because of the presence of graphite balls and the complex modeling of peripheral reflectors.
机译:HTR-10是一个10 MWt原型卵石床反应器(PBR),可为中子学计算提供双重异质几何形状。对相关的燃料元件进行适当的单元处理对于创建与问题相关的多组横截面至关重要。考虑到SCALE6中用于共振自屏蔽校正的四个单位单元选项,使用CSAS6序列建立了一系列HTR-10核心模型,以系统地研究它们如何影响PBR临界计算的计算准确性和效率。研究了三种核心配置,从简化的无限格子到详细的几何形状。基于相同的ENDF /B-Ⅶ.0横截面库,通过与连续能量SCALE6 / CSAS6和MCNP5计算进行比较,评估了多组结果。比较表明,INFHOMMEDIUM结果高估了有效倍增系数(K_(eff))约2800 pcm,而LATTICECELL和MULTIREGION处理则高估了k_(eff)值,在大约470-680 pcm处具有相似的偏差。 DOUBLEHET的结果得到了进一步的改善,将K_(eff)高估降低到大约280 pcm。通过在HTR-10临界度计算中使用SCALE6 / CSAS6,该比较产生了两个意外的问题。特别是,本研究中连续能量CSAS6的计算得出与MCNP5的差异不可忽略,可能导致k_(eff)值被高估了大约680 pcm。值得注意的是,由于存在石墨球和碳纳米管的复杂建模,在卵石燃料区中使用细胞加权混合物代替单个TRISO颗粒的显式模型不会缩短CSAS6在高保真HTR-10模型中的计算时间。外围反射器。

著录项

  • 来源
    《Annals of nuclear energy》 |2014年第2期|1-7|共7页
  • 作者单位

    Institute of Nuclear Engineering and Science, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC;

    Institute of Nuclear Engineering and Science, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC,Department of Engineering and System Science, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC;

    Nuclear Science and Technology Development Center, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC;

    Institute of Nuclear Engineering and Science, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC,Department of Engineering and System Science, National Tsing-Hua University, Hsinchu 30013, Taiwan, ROC;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pebble-bed reactors; Criticality; Double heterogeneity; SCALE6/CSAS6; MCNP5;

    机译:卵石床反应器;关键程度;双重异质性SCALE6 / CSAS6;MCNP5;

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