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Simultaneous measurement of neutron and gamma-ray radiation levels from a TRIGA reactor core using silicon carbide semiconductor detectors

机译:使用碳化硅半导体检测器同时测量来自Triga反应器芯的中子和γ射线辐射水平

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摘要

The ability of a SiC detector to measure neutron and gamma radiation levels in a TRIGA reactor's mixed neutron/gamma field was demonstrated. Linear responses to an epicadmium neutron fluence rate (up to 3/spl times/10/sup 7/ cm/sup -2/ s/sup -1/) and to a gamma dose rate (0.6-234 krad-Si h/sup -1/) were obtained with the detector. Axial profiles of the reactor core's neutron and gamma-ray radiation levels were successfully generated through sequential measurements along the length of the core. The SiC detector shows a high level of precision for both neutrons and gamma rays in high-intensity radiation environments -1.9% for neutrons and better than 0.6% for gamma rays. These results indicate that SiC detectors are well suited for applications such as spent fuel monitoring where measurements in mixed neutron/gamma fields are desired.
机译:证实了SiC检测器测量Triga反应器混合中子/γ场中的中子和γ辐射水平的能力。线性响应蛋白中子流量(最多3 / SPL时间/ 10 / SOP 7 / cm / sup -2 / sup -1 /)并达到γ剂量率(0.6-234 krad-si h / sup用探测器获得-1 /)。通过沿芯的长度的顺序测量成功地产生反应器芯的中子和γ射线辐射水平的轴向轮廓。 SiC检测器显示了高强度辐射环境中的中子和伽马光线的高精度-1.9%,对于伽马射线而言优于0.6%。这些结果表明,SiC检测器非常适合于诸如花费燃料监测的应用,其中期望混合中子/伽马场中的测量。

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