Estimation of scattered radiation influence on neutron beams at a calibration laboratory using Monte Carlo simulation of a long counter

Tallyson Sarmento Alvarenga, Simone . S. Fernandes, Walsan W. Pereira, Mike. R. Mayhughc, Linda V. E. Caldas
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Abstract

At the Neutron Calibration Laboratory (LCN) of IPEN/CNEN, a 241AmBe source was used to test and calibrate neutron detectors. The neutrons emitted by the source reach the detector as intended, but they also scatter undesirably from the building's floor, ceiling, and walls, leading to indirect detection. A Long Counter (LC) detector was modeled using the MCNPX Monte Carlo code. The objective of this study was to measure the contribution of scattered radiation at the LCN / IPEN, and to determine the fluence rate, at different points in the calibration room at source-to-detector distances of 100 cm and 150 cm; subsequently, the results were compared with those of the Brazilian Laboratory of Metrology of Ionizing Radiation (LNMRI). The results show that the fluence rates of LCN / IPEN are comparable to those of this neutron laboratory for the 100 and 150 cm source-to-detector distances using a 241AmBe source (37 GBq). The results show that the calibration of neutron detectors should be performed at distances less than 100 cm, where the contribution of scattered radiation is within the 40% limit recommended by ISO 8529-1.
用蒙特卡罗模拟长计数器在校准实验室估计散射辐射对中子束的影响
在IPEN/CNEN中子校准实验室(LCN),使用241AmBe源对中子探测器进行测试和校准。源发射的中子如预期的那样到达探测器,但它们也从建筑物的地板、天花板和墙壁上散射,导致间接探测。利用MCNPX蒙特卡罗代码对长计数器检测器进行了建模。本研究的目的是测量散射辐射对LCN / IPEN的贡献,并确定校准室中源到探测器距离为100 cm和150 cm的不同点的影响率;随后,将结果与巴西电离辐射计量实验室(LNMRI)的结果进行了比较。结果表明,LCN / IPEN在源-探测器距离为100 cm和150 cm时的通量率与该中子实验室使用241AmBe源(37 GBq)的通量率相当。结果表明,中子探测器的校准应在小于100 cm的距离内进行,其中散射辐射的贡献在ISO 8529-1推荐的40%限值内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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