首页> 外文会议>Conference on physics of reactors >IAEA CRP ON HTGR UNCERTAINTIES: COMPARISON OF EX. Ⅰ-2C NOMINAL RESULTS AND COUPLING WITH THE PHISICS/RELAP5-3D CORE MODEL FOR EX.Ⅱ-1
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IAEA CRP ON HTGR UNCERTAINTIES: COMPARISON OF EX. Ⅰ-2C NOMINAL RESULTS AND COUPLING WITH THE PHISICS/RELAP5-3D CORE MODEL FOR EX.Ⅱ-1

机译:原子能机构对HTGR不确定性的CRP:EX的比较。 Ⅰ-2C标称效果和耦合与PHISICS / RERAP5-3D核心模型Ⅱ-1

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Super cell models are compared to the nominal results obtained in the IAEA CRP for HTGR for single block models (Ex. Ⅰ-2a and Ex. Ⅰ-2b) to evaluate if such models achieve softer neutron spectra that characterizes these reactors. A comparison of a set of super cell models consisting of various moderation schemes and nuclide inventories is performed to establish the merits of this approach. The super cell are analyzed with the SCALE 6.1 deterministic code NEWT coupled with the TRITON sequence. The cross-section data generated by the TRITON/NEWT sequence is additionally utilized in the coupled neutron-ics/thermal-hydraulics code PHISICS/RELAP5-3D. The impact of various super cell flux-weighted cross sections in subsequent core calculations from a neutronics point of view is evaluated. The cross section uncertainties (nuclear data uncertainties) along with thermal-hydraulics uncertainties will be propagated through coupled neutron-ics/thermal-hydraulics calculations at a later stage. The neutron fluxes observed in super cells is shown to be softer than single block models, but depends highly on the composition and topology of the peripheral regions. The preliminary results obtained with PHISICS/RELAP5-3D indicate that such variations in neutron fluxes induce different magnitude of changes in the core's effective multiplication factor, depending whether the core is at the beginning or end of life.
机译:将超级细胞模型与IAEA CRP中获得的标称结果进行比较,用于单块模型(例如Ⅰ-2A和EX。Ⅰ-2B),以评估这种模型实现这些反应器表征这些反应器的更柔和中子谱。进行一组超级细胞模型的比较,包括各种调节方案和核素库存,以建立这种方法的优点。通过与Triton序列耦合的刻度6.1确定性代码Newt分析超级单元。由TRITON / NEWT序列产生的横截面数据另外用于耦合的中子-IC /热液压码PHISICS / RELAP5-3D。评估各种超级细胞磁通量加权横截面的影响从中子图像的后续核心计算。横截面不确定性(核数据不确定因素)以及热液压不确定性将通过又一次的耦合中子-IC /热液压计算传播。在超细胞中观察到的中子丝量显示比单块模型更软,但高度取决于周边区域的组成和拓扑。用Phisics / Relap5-3D获得的初步结果表明中子磁通量的这种变化诱导核心有效乘法因子中的变化不同,具体取决于核心是否位于生命的开始或结束。

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