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Development of three-dimensional neutronics calculation system for design studies on helical reactor FFHR

机译:螺旋反应堆FFHR设计研究的三维中子学计算系统的开发

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Construction of a three-dimensional neutronics calculation system has been started for design studies on the helical reactor FFHR2. In the calculation system, geometry data of the helical structures are generated according to numerical equations for quick feedback between neutronics evaluation and design modification. The tritium breeding abilities of the FFHR2 with the Flibe + Be/JLF-1 (Reduced Activation Ferritic/Martensitic Steel) and the Li/V-alloy blanket systems were investigated by using the calculation system. Since the original design could not achieve the tritium breeding ratios (TBRs) > 1.0 due to neutron leakage through opening between the blanket components, the dimensions have been modified to enhance the breeding ability. After the modification, the TBRs of 1.08 and 0.98 were obtained for the Flibe + Be/JLF-1 and Li/V-alloy blanket systems, respectively. The present results indicate that the blanket systems have potential to achieve adequate tritium breeding ability in the FFHR2 by further design optimization.
机译:已经开始建设三维中子学计算系统,用于螺旋反应堆FFHR2的设计研究。在计算系统中,根据数值方程生成螺旋结构的几何数据,以在中子学评估和设计修改之间快速反馈。利用计算系统研究了Flibe + Be / JLF-1(还原活化铁素体/马氏体钢)和Li / V合金毯层系统对FFHR2的breed繁殖能力。由于原始设计由于毯子组件之间的开口导致中子泄漏而无法达到>增殖比(TBR)> 1.0,因此已对尺寸进行了修改以增强繁殖能力。修改后,对于Flibe + Be / JLF-1和Li / V合金毯覆层系统,分别获得1.08和0.98的TBR。目前的结果表明,通过进一步的设计优化,毯式系统有潜力在FFHR2中获得足够的tri繁殖能力。

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