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Preliminary Selection of Device Materials to Locally Transform Thermal into SFR Neutron Spectrum

机译:器件材料的初步选择,可将热量局部转化为SFR中子谱

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The safe introduction of Generation IV (Gen IV) reactor concepts into operation will require extensive testing of their components. This must be performed under neutronic conditions representative of those expected to prevail inside the new reactor cores when in operation. In a thermal Material Testing Reactor (MTR) such neutronic conditions can be achieved by tailoring the prevailing neutron spectrum with the utilization of a device containing appropriate materials. In this work various materials are investigated as candidate components of a device that will be required in case that a thermal MTR neutron energy spectrum must be locally transformed, so as to imitate Sodium cooled Fast Reactor (SFR). Many nuclides have been examined with respect to only their neutronic behavior, providing thus a pool of neutronically appropriate materials for consideration in further investigation, such as regarding reactor safety and fabrication issues. The nuclides have been studied using the neutronics code TRIPOLI-4.8 while the reflector of the Jules Horowitz Reactor (JHR) was considered as the hosting environment of the transforming device. The results obtained suggest that elements with important inelastic neutron scattering could be chosen at a first level as being able to modify the prevailing neutron spectrum towards the desired direction. The factors which are important for an effective inelastic scatterer comprise density and inelastic microscopic cross section, as well as the energy ranges where inelastic scattering occurs. All the above factors have been separately examined in order to suggest potential device materials, able to locally produce SFR neutron spectrum imitation in a thermal MTR.
机译:将第四代(第四代)反应堆概念安全地引入运行中,将需要对其组件进行广泛的测试。这必须在中子条件下进行,该条件代表在运行时预期在新反应堆堆芯内普遍存在的条件。在热材料测试反应堆(MTR)中,可以通过使用包含适当材料的设备来定制主要的中子光谱,从而实现这种中子条件。在这项工作中,研究了多种材料作为设备的候选组件,这些组件将在必须局部转换热MTR中子能谱以模仿钠冷快堆(SFR)的情况下所需。已经检查了许多核素,仅涉及它们的中子行为,因此提供了一组中子合适的材料供进一步研究,例如有关反应堆安全和制造问题的研究。已经使用中子学密码TRIPOLI-4.8对核素进行了研究,而儒勒·霍洛维兹反应堆(JHR)的反射器被视为变换装置的宿主环境。获得的结果表明,具有重要非弹性中子散射的元素可以在第一级被选择,因为它们能够朝着所需方向修改主要的中子谱。对于有效的非弹性散射体重要的因素包括密度和非弹性显微截面,以及发生非弹性散射的能量范围。为了建议潜在的装置材料,能够在热MTR中局部产生SFR中子光谱仿制品,对所有上述因素进行了单独检查。

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