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Analysis and recent advances in gamma heating measurements in MINERVE facility by using TLD and OSLD techniques

机译:使用TLD和OSLD技术对MINERVE设施中的伽马热测量进行分析和最新进展

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The objective of this study is to develop nuclear heating measurement methods in Zero Power experimental reactors. This paper presents the analysis of Thermo-Luminescent Detector (TLD) and Optically Stimulated Luminescent Detectors (OSLD) experiments in the UO2 core of the MINERVE research reactor at the CEA Cadarache. The experimental sources of uncertainties on the gamma dose have been reduced by improving the conditions, as well as the repeatability, of the calibration step for each individual TLD. The interpretation of these measurements needs to take into account calculation of cavity correction factors, related to calibration and irradiation configurations, as well as neutron corrections calculations. These calculations are based on Monte Carlo simulations of neutron-gamma and gamma-electron transport coupled particles. TLD and OSLD are positioned inside aluminum pillboxes. The comparison between calculated and measured integral gamma-ray absorbed doses using TLD, shows that calculation slightly overestimates the measurement with a C/E value equal to 1.05 ± 5.3 % (k = 2). By using OSLD, the calculation slightly underestimates the measurement with a C/E value equal to 0.96 ± 7.0% (k = 2).
机译:这项研究的目的是开发零功率实验堆中的核热测量方法。本文介绍了在CEA Cadarache的MINERVE研究堆的UO2堆芯中进行的热发光探测器(TLD)和光激发发光探测器(OSLD)实验的分析。通过改善每个TLD的校准步骤的条件以及可重复性,减少了伽玛剂量不确定性的实验来源。这些测量的解释需要考虑与校正和辐照配置有关的腔校正因子的计算以及中子校正计算。这些计算基于中子-伽马和伽马-电子传输耦合粒子的蒙特卡罗模拟。 TLD和OSLD位于铝制药盒内。使用TLD计算和测量的整体伽玛射线吸收剂量之间的比较表明,计算结果稍微高估了C / E值等于1.05±5.3%(k = 2)的测量值。通过使用OSLD,计算结果会低估C / E值等于0.96±7.0%(k = 2)的测量值。

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