Dawn Sandipan, Bakshi A K, Sathian Deepa, Selvam T Palani
Radiological Physics & Advisory Division, Health, Safety & Environment Group, Bhabha Atomic Research Centre , Mumbai 400 085.
Radiat Prot Dosimetry. 2017 Jun 15;175(2):149-162. doi: 10.1093/rpd/ncw280.
Neutron scatter contributions as a function of distance along the transverse axis of 241Am-Be source were estimated by three different methods such as shadow cone, semi-empirical and Monte Carlo. The Monte Carlo-based FLUKA code was used to simulate the existing room used for the calibration of CR-39 detector as well as LB6411 doseratemeter for selected distances from 241Am-Be source. The modified 241Am-Be spectra at different irradiation geometries such as at different source detector distances, behind the shadow cone, at the surface of the water phantom were also evaluated using Monte Carlo calculations. Neutron scatter contributions, estimated using three different methods compare reasonably well. It is proposed to use the scattering correction factors estimated through Monte Carlo simulation and other methods for the calibration of CR-39 detector and doseratemeter at 0.75 and 1 m distance from the source.
通过三种不同方法,即阴影锥法、半经验法和蒙特卡罗法,估算了沿241Am-Be源横轴距离的中子散射贡献。基于蒙特卡罗的FLUKA代码用于模拟现有用于校准CR-39探测器以及LB6411剂量率仪的房间,针对从241Am-Be源选定的距离进行模拟。还使用蒙特卡罗计算评估了不同辐照几何条件下,如不同源探测器距离、在阴影锥后面、在水体模表面处的修正241Am-Be能谱。使用三种不同方法估算的中子散射贡献比较吻合。建议使用通过蒙特卡罗模拟和其他方法估算的散射校正因子,对距离源0.75米和1米处的CR-39探测器和剂量率仪进行校准。