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首页> 外文期刊>Fusion Engineering and Design >Impact Of Reflected Neutrons On Accuracy Of Tritium Production Rate Prediction In Blanket Mock-ups For Fusion Reactors
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Impact Of Reflected Neutrons On Accuracy Of Tritium Production Rate Prediction In Blanket Mock-ups For Fusion Reactors

机译:反射中子对聚变反应堆毯子样机中Tri生产率预测精度的影响

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摘要

A series of breeding blanket neutronics experiments were carried out with DT neutrons in the Japanese ITER test blanket module at JAEA Fusion Neutronics Source (FNS), and tritium production rates (TPRs) inside different blanket mock-ups were measured in detail. Most of calculations made using FENDL-2.1 and MCNP agreed well with the measured TPRs. On the other hand, there were overestimations of the calculation for the TPR in the experiment with a reflector and the TPR around the boundary between the rear part of the breeder layer and the beryllium in the pebble bed mock-up experiment. In this study, we investigated the possibility of improvement of the calculation by modifying the part of angular distributions in backward directions in FENDL-2.1. By uniformly decreasing the backward elastic scattering cross-sections of ~(56)Fe by 20% below the original data for incoming neutrons in the energy range from 0.5234 MeV up to 15.0 MeV, the overestimation of the calculations for the TPR in the enriched breeding blanket experiment with a reflector was reduced. Also, by uniformly decreasing the backward elastic scattering cross-sections of ~9Be by 20% and 30% below the original data for the incoming neutrons in the energy range from 0.93 MeV up to 14.94 MeV, and by 20% for those from 0.62 MeV up to 14.94 MeV, the overestimation of the calculations for the TPR around the boundary between the rear part of the breeder layer and the beryllium was lessened.
机译:在JAEA融合中子学源(FNS)的日本ITER测试毯模块中,用DT中子进行了一系列育种毯中子学实验,并详细测量了不同毯子模型中的production生产率(TPR)。使用FENDL-2.1和MCNP进行的大多数计算与测得的TPR吻合得很好。另一方面,在卵石床模拟实验中,使用反射镜和TPR的计算被高估了,其中反射器和TPR的计算是围绕繁殖层后部和铍之间的边界。在这项研究中,我们研究了通过修改FENDL-2.1中向后方向的角度分布部分来改进计算的可能性。通过在能量范围从0.5234 MeV到15.0 MeV的范围内,均匀地将〜(56)Fe的向后弹性散射截面减小20%,低于传入中子的原始数据,从而高估了TPR在富集育种中的计算结果减少了使用反射镜进行的毯式实验。同样,通过将能量从0.93 MeV到14.94 MeV的中子的原始中子的〜9Be的向后弹性散射横截面均匀减小,比原始数据低20%和30%,对于0.62 MeV的中子,则减小20%最高到14.94 MeV,减少了围绕种种层后部和铍之间边界的TPR计算的高估。

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