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Activation analysis of targets and lead in a?lead slowing down spectrometer system

机译:铅减速光谱仪系统中靶标和铅的活化分析

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A neutron generation system was developed to induce fissile fission in a?lead slowing down spectrometer (LSDS) system. The source neutron is one of the key factors for LSDS system work. The LSDS was developed to quantify the isotopic contents of fissile materials in spent nuclear fuel and recycled fuel. The source neutron is produced at a multilayered target by the (e,γ)(γ,n) reaction and slowed down at the lead medium. Activation analysis of the target materials is necessary to estimate the lifetime, durability, and safety of the target system. The CINDER90 code was used for the activation analysis, and it can involve three-dimensional geometry, position dependent neutron flux, and multigroup cross-section libraries. Several sensitivity calculations for a metal target with different geometries, materials, and coolants were done to achieve a high neutron generation rate and a low activation characteristic. Based on the results of the activation analysis, tantalum was chosen as a target material due to its better activation characteristics, and helium gas was suggested as a coolant. In addition, activation in a lead medium was performed. After a distance of 55?cm from the lead surface to the neutron incidence, the neutron intensity dramatically decreased; this result indicates very low activation.
机译:开发了一种中子产生系统,以在铅减速光谱仪(LSDS)系统中诱发裂变裂变。源中子是LSDS系统工作的关键因素之一。 LSDS的开发旨在量化乏核燃料和再生燃料中易裂变物质的同位素含量。源中子通过(e,γ)(γ,n)反应在多层靶处产生,并在铅介质中减慢。目标材料的活化分析对于评估目标系统的寿命,耐用性和安全性是必要的。 CINDER90代码用于激活分析,它可以涉及三维几何,位置依赖的中子通量和多组截面库。对具有不同几何形状,材料和冷却剂的金属靶进行了几次灵敏度计算,以实现高中子产生速率和低活化特性。根据活化分析的结果,由于钽具有更好的活化特性,因此选择钽作为目标材料,并建议使用氦气作为冷却剂。另外,进行铅介质中的活化。从铅表面到中子入射距离达到55?cm后,中子强度急剧下降。此结果表明激活非常低。

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