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Design of a permanent epithermal neutron irradiation site in the Syrian MNSR

机译:叙利亚MNSR中永久性超热中子辐照场所的设计

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A permanent epithermal neutron irradiation site was designed in the Syrian Miniature Neutron Source Reactor (MNSR) by using cadmium as a thermal neutron shielding material. This site was designed by Cd-shielding the internal surface of the outer aluminum tube of the F01S (First Outer Irradiation Site) in the MNSR. The MCNP-4C calculations showed that, to have a permanent epithermal neutron irradiation site for the ENAA using the cadmium, it is necessary to add the top beryllium shims of the reactor to compensate for the reactivity losses due to the neutrons absorption in the cylindrical cadmium shell. The activation detectors were used to measure the thermal and epithermal neutron fluxes in the F01S. Distribution of the thermal neutron flux along the vertical direction of the outer irradiation capsule used in the FOIS has been found using MCNP-4C code, and experimentally by irradiating five copper wires. Good agreements were obtained between the calculated and the measured results.
机译:通过使用镉作为热中子屏蔽材料,在叙利亚微型中子源反应堆(MNSR)中设计了一个永久的超热中子辐照场所。通过Cd屏蔽MNSR中F01S(第一外照射部位)的外铝管的内表面来设计该部位。 MCNP-4C计算表明,要使使用镉的ENAA具有永久的超热中子辐照位置,必须添加反应堆的顶部铍垫片,以补偿由于圆柱形镉吸收中子所引起的反应性损失。贝壳。激活探测器用于测量F01S中的热和超热中子通量。已经使用MCNP-4C代码并通过辐射五根铜线进行了实验,发现了沿FOIS中使用的外部辐射囊的垂直方向的中子通量的分布。在计算结果和测量结果之间取得了良好的一致性。

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