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Blanket neutronics of Li/vanadium-alloy and Flibe/vanadium-alloy systems for FFHR

机译:FFHR的Li /钒合金和Flibe /钒合金的毯子中子学

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Neutronics calculations were carried out to characterize self-cooled Li and Flibe blankets with vanadium alloy (V-4Cr-4Ti) structure, as advanced options for the Force Free Helical Reactor (FFHR-2). In the present paper, the parameter dependence of Tritium Breeding Ratio (TBR) and neutron shield performance was examined for a Li blanket (FFHR-LV) and a Flibe blanket (FFHR-FV). The TBR was independent from the Flibe composition between 30 and 45 mol% of BeF_2 in the case of the FFHR-FV. Due to the increase in the temperature range of the coolant Flibe as a result of the change of the structural materials from JLF-1 (low activation ferritic steel) to V-4Cr-4Ti, the fraction of BeF_2 can be changed from 43 to 31 mol% without changing the margin to coagulation of Flibe. The compositional change of Flibe resulted in a significant decrease in its viscosity. The decrease of TBR by the effects of MHD insulator coating with Er was negligibly small with the expected doping level of Er in the FFHR-LV. The increase in the B_4C in the shielding material resulted in the decrease in the fast neutron flux at the superconducting magnet by 60-70% in both FFHR-LV and FFHR-FV. Optimum neutronics performance for the two blanket systems was derived by the calculation.
机译:进行中子学计算以表征具有钒合金(V-4Cr-4Ti)结构的自冷Li和Flibe毡层,作为无力螺旋反应堆(FFHR-2)的高级选项。在本文中,研究了Li毯(FFHR-LV)和Flibe毯(FFHR-FV)的Tri繁殖率(TBR)和中子屏蔽性能的参数依赖性。在FFHR-FV的情况下,TBR与Flibe组成无关,介于30至45mol%的BeF_2之间。由于结构材料从JLF-1(低活化铁素体钢)变为V-4Cr-4Ti而导致冷却液Flibe的温度范围增加,因此BeF_2的比例可以从43变为31摩尔%而不改变Flibe的凝结余量。 Flibe的成分变化导致其粘度显着降低。在FFHR-LV中,Er的MHD绝缘体涂层对TBR的降低作用与预期的Er掺杂水平相比可忽略不计。屏蔽材料中B_4C的增加导致FFHR-LV和FFHR-FV中超导磁体处的快速中子通量减少60-70%。通过计算得出了两个橡皮布系统的最佳中子学性能。

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