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Accuracy of reaction rates in the accelerator-driven system with 14MeV neutrons at the Kyoto University Critical Assembly

机译:京都大学重要会议的14MeV中子在加速器驱动系统中反应速率的准确性

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摘要

Reaction rate experiments on the accelerator-driven system (ADS) are conducted by combining a critical assembly of a solid-moderated and -reflected core with a pulsed neutron generator. Neutrons (14 MeV) generated from the accelerator are injected into a subcritical system and the reaction rates are measured by the foil activation method to obtain neutronic spectrum data. The numerical calculations are executed by MCNPX with ENDF/B-VI.8, JENDL-3.3 and JENDL/D-99 libraries to evaluate the reaction rates of activation foils set in the center of the core. For the ADS experiments with 14 MeV neutrons, the C/E values between the experiments and the calculations are found to be well within the relative difference of about 30% in all foils up to subcriticality 1.05%Δk/k. The reaction rates do not depend on the subcriticality level in cases of [115]In, [56]Fe (purity 99.99%), [27]Al, whereas subcriticality dependence is observed in [93]Nb. In the critical experiments carried out in the A, B and C cores, special mention should be made of the remarkable effect of the composition rate of [56]Fe material. Thus a remarkable improvement is observed in the accuracy of experimental and numerical reaction rates, demonstrating the importance of material impurity for subcritical experiments.
机译:加速器驱动系统(ADS)的反应速率实验是通过将固体调节和反射核的关键组件与脉冲中子发生器相结合而进行的。由加速器产生的中子(14 MeV)被注入亚临界系统,并通过箔活化法测量反应速率以获得中子光谱数据。 MCNPX使用ENDF / B-VI.8,JENDL-3.3和JENDL / D-99库执行数值计算,以评估设置在核心中心的活化箔的反应速率。对于使用14个MeV中子的ADS实验,发现实验和计算之间的C / E值在所有箔片中的相对差大约在30%以内,直至亚临界1.05%Δk/ k。在[115] In,[56] Fe(纯度99.99%),[27] Al的情况下,反应速率不取决于亚临界水平,而在[93] Nb中观察到亚临界依赖性。在A,B和C核中进行的关键实验中,应特别提及[56] Fe材料的成分比率的显着影响。因此,观察到了实验速度和数值反应速率准确性的显着提高,这表明材料杂质对于亚临界实验的重要性。

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