Taal A, van der Kooij A, Okx W J C
Reactor Institute Delft, Mekelweg 15, Delft, The Netherlands
Reactor Institute Delft, Mekelweg 15, Delft, The Netherlands.
Radiat Prot Dosimetry. 2016 Nov;171(3):326-336. doi: 10.1093/rpd/ncv403. Epub 2015 Sep 14.
Monte Carlo simulations were performed with MCNPX to determine the neutron dose equivalent in thick concrete after a metal shield, a double-layered shielding configuration. In the simulations, a 230-MeV proton beam impinging on a copper target was used to produce the neutrons. For forward angles up to 30° with respect to the proton beam, it is found that the neutron dose equivalent in thick concrete after a metal layer can be expressed in a single formula. This single formula being the neutron dose equivalent formula for a single thick concrete shield enhanced with an additional exponential term. The exponent of this additional exponential term is related to the relative macroscopic neutron removal cross section of the metal with respect to the concrete. The single formula found fits MCNPX data for the neutron dose equivalent in thick concrete after layers of metal ranging from beryllium to lead. First attempts were made to make this shortcut formula applicable to alloys and compounds of metals.
使用MCNPX进行了蒙特卡罗模拟,以确定在金属屏蔽(一种双层屏蔽配置)之后厚混凝土中的中子剂量当量。在模拟中,使用撞击铜靶的230 MeV质子束来产生中子。对于相对于质子束高达30°的前向角度,发现金属层之后厚混凝土中的中子剂量当量可以用一个单一公式表示。这个单一公式是通过一个附加指数项增强的单一厚混凝土屏蔽的中子剂量当量公式。这个附加指数项的指数与金属相对于混凝土的相对宏观中子去除截面有关。所找到的单一公式与MCNPX关于从铍到铅的金属层之后厚混凝土中中子剂量当量的数据相符。首次尝试使这个简化公式适用于金属的合金和化合物。