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The Reactivity Temperature Coefficient Analysis in Light Water Moderated UO_2 and UO_2-PuO_2 Lattices

机译:轻水缓和的UO_2和UO_2-PuO_2晶格的反应温度系数分析

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摘要

The contributions of different physical phenomena to the reactivity temperature coefficient (RTC) in typical light water moderated lattices have been assessed. Using the APOLLO2 code with the CEA93 cross-section library based on JEF2.2 data, we have analyzed the main French experiments available on the RTC: the CREOLE and MISTRAL experiments. In these experiments performed in the EOLE critical facility located at CEA/Cadarache, the RTC has been measured in both UO_2 and UO_2-PuO_2 pressurized water reactor-type lattices. Our calculations have shown that the calculation error in UO_2 lattices is <1 pcm/℃, which is considered as the target accuracy for reactor design calculations. On the other hand the calculation error in mixed oxide lattices is more significant in both low- and high-temperature ranges: An average error of -2 +- 0.5 pcm/℃ is observed at low temperatures, and an error of +3 +- 2 pcm/℃ is obtained for temperatures >250℃. Our analysis has shown that the negative error in the low-temperature range is linked to the thermal spectrum shift effect, which is strongly dependent on the thermal shapes of the cross-sections of plutonium isotopes, whereas the positive error in the high-temperature range is mainly linked to the water density effects.
机译:在典型的轻水缓和晶格中,已评估了不同物理现象对反应温度系数(RTC)的贡献。使用基于JEF2.2数据的带有CEA93截面库的APOLLO2代码,我们分析了RTC上可用的主要法国实验:CREOLE和MISTRAL实验。在位于CEA / Cadarache的EOLE关键设施中进行的这些实验中,已在UO_2和UO_2-PuO_2压水反应堆式晶格中测量了RTC。我们的计算表明,UO_2晶格的计算误差小于1 pcm /℃,这被认为是反应堆设计计算的目标精度。另一方面,在低温和高温范围内,混合氧化物晶格中的计算误差都更大:在低温下,平均误差为-2 +-0.5 pcm /℃,而误差为+3 +-温度> 250℃时获得2 pcm /℃。我们的分析表明,低温范围内的负误差与热光谱移位效应有关,而热谱移效应强烈地取决于oto同位素截面的热形状,而高温范围内的正误差主要与水密度效应有关。

著录项

  • 来源
    《Nuclear science and engineering》 |2003年第1期|p.47-73|共27页
  • 作者单位

    Faculty of Sciences, University Mohammed V, Rabat, Morocco;

  • 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 原子能技术;
  • 关键词

  • 入库时间 2022-08-18 00:45:15

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