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Neutron flux spectra investigations in breeding blanket assembly containing lithium titanate and Lead irradiated with DT neutrons

机译:DT中子辐照含钛酸锂和铅的育种毯组件中的中子通量谱研究

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A benchmark experiment was performed to obtain the neutron spectra in a breeding blanket assembly consisting of lithium titanate and Lead using multiple foil activation technique with unfolding code SAND-II-SNL. The purpose of the experiment was to validate the calculated neutron spectra and neutron induced reaction rates with MCNP-4A code and FENDL-2.1 & FENDL-3.0 transport libraries in the layered geometry of lithium titanate and Lead. Measured reaction rates in different activation foils were compared with MCNP-IRDFF-1.05 and FISPACT-EAF2007 calculated values. In general, FENDL-3.0 calculated reaction rates are closer to the measured reaction rates than FENDL-2.1 calculated rates. Calculated Lead multiplication is improved from FENDL-2.1 to FENDL-3.0 up to 2%. Unfolded neutron spectra in the multiplier zones are slightly underestimated by calculations in the secondary neutron emission range of Pb(n, xn) reactions indicating the need of improvement in the (n, 2n) cross-section of Lead isotopes. The observed underestimation in the Lead multiplication puts the tritium production calculations of breeding blankets using Lead as multiplier on conservative side. The inelastic scattering range of Lead isotopes is overestimated by calculations as large as 80% in one of the breeder zone. This observation requires improvement in the inelastic scattering cross-sections of Lead isotopes in FENDL evaluations. (C) 2015 Elsevier B.V. All rights reserved.
机译:进行了基准实验,以使用带有展开代码SAND-II-SNL的多箔活化技术,在由钛酸锂和铅组成的繁殖毯组件中获得中子光谱。该实验的目的是用钛酸锂和铅的层状几何结构验证使用MCNP-4A代码以及FENDL-2.1和FENDL-3.0传输库计算出的中子光谱和中子诱发的反应速率。将在不同活化箔中测得的反应速率与MCNP-IRDFF-1.05和FISPACT-EAF2007计算值进行比较。通常,FENDL-3.0计算的反应速率比FENDL-2.1计算的反应速率更接近实测反应速率。计算的导程乘法从FENDL-2.1改进到FENDL-3.0,提高了2%。通过在Pb(n,xn)反应的次级中子发射范围内进行计算,可以稍微低估倍增区中未折叠的中子光谱,这表明需要改进铅同位素的(n,2n)截面。 Lead乘积中观察到的低估使保守的情况下使用Lead作为乘数的繁殖毯的the产量计算成为可能。在一个繁殖区中,铅同位素的非弹性散射范围被高达80%的计算高估了。这种观察需要在FENDL评估中改善铅同位素的非弹性散射截面。 (C)2015 Elsevier B.V.保留所有权利。

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