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首页> 外文期刊>Fusion Engineering and Design >New integral experiments for large angle scattering cross section data benchmarking with DT neutron beam at JAEA/FNS
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New integral experiments for large angle scattering cross section data benchmarking with DT neutron beam at JAEA/FNS

机译:DT中子束在JAEA / FNS上进行大角度散射截面数据基准测试的新积分实验

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摘要

A new integral experiment with a deuteron-triton fusion (DT) neutron beam started in order to validate scattering cross section data. First the DT neutron beam was constructed with a collimator. The performance of the collimator system and the characteristics of the DT neutron beam were measured. Second a new integral experiment for type 316 stainless steel (SS316) was carried out with this DT neutron beam. The DT neutron beam of 3.5 cm in diameter was injected to the front surface center of an SS316 cylindrical assembly. Reaction rates of the ~(93)Nb(n,2n)~(92m)Nb reaction in the assembly were measured with the activation foil method and were calculated with the Monte Carlo transport calculation code. The measurement points were located at three positions, on the center of the beam axis and at 15 cm and 30 cm apart from the axis. The ratio of calculation to experiment of the~(93) Nb(n,2n)~(92m)Nb reaction rate became smaller than 1 with the distance from the beam axis. Then, the dependency of each reaction rate on scattering angle was calculated. It was proved that at off-axis positions, where C/E is smaller than 1, 90° scattering contribute relatively larger than at on-axis positions and backward scattering made little contribution to the results in this experiment. The reasons of the discrepancy between the measured and calculated data will be investigated.
机译:为了验证散射截面数据,开始了使用氘-tri子聚变(DT)中子束的新积分实验。首先用准直仪构造DT中子束。测量了准直仪系统的性能和DT中子束的特性。其次,用这种DT中子束对316不锈钢(SS316)进行了新的积分实验。将直径为3.5厘米的DT中子束注入SS316圆柱组件的前表面中心。用活化箔法测量组件中〜(93)Nb(n,2n)〜(92m)Nb反应的反应速率,并使用蒙特卡洛输运计算代码进行计算。测量点位于光束轴中心的三个位置,与轴的距离分别为15 cm和30 cm。 〜(93)Nb(n,2n)〜(92m)Nb反应速率的计算与实验之比随着与束轴距离的增加而小于1。然后,计算各反应速率对散射角的依赖性。事实证明,在C / E小于1的离轴位置,90°散射比在轴上位置贡献更大,而向后散射对该实验的结果贡献很小。将调查测量数据与计算数据之间差异的原因。

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