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首页> 外文期刊>Radiation Protection Dosimetry >DOSIMETRIC ASSESSMENT AND CHARACTERISATION OF THE NEUTRON FIE1D AROUND A HOWITZER CONTAINER USING A BONNER SPHERE SPECTROMETER, MONTE CARLO SIMULATIONS AND THE NSDANN AND NSDUAZ UNFOLDING CODES
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DOSIMETRIC ASSESSMENT AND CHARACTERISATION OF THE NEUTRON FIE1D AROUND A HOWITZER CONTAINER USING A BONNER SPHERE SPECTROMETER, MONTE CARLO SIMULATIONS AND THE NSDANN AND NSDUAZ UNFOLDING CODES

机译:邦纳球谱仪,蒙特卡罗模拟以及NSDANN和NSDUAZ展开编码对中子包围物的中子场的定量评估和表征。

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摘要

The Neutron Measurements 1aboratory at the Nuclear Engineering Department of the Polytechnic University of Madrid consists of a bunker-like room and was built for neutron dosimetry research purposes and measurements. The facility includes a 74-GBq ~(241)Am-Be neutron source placed inside a neutron Howitzer container. The source can be moved to the irradiation or to the storage position. In this work, a Bonner sphere spectrometer (BSS) was used to measure the neutron fluence spectra with the source in both positions. Ambient dose equivalent rates, H~*(10), were measured using a calibrated neutron area monitor LB6411 (Berthold). The measured count rates were used as input to the NSDann and NSDUAZ unfolding programs to obtain the neutron fluence spectra and H*(10). Monte Carlo (MC) simulation methods were used to model the system and to calculate the neutron fluence rate and the ambient dose equivalent rate at the measurement points. The comparison between NSDUAZ and NSDann resulted in relative deviations up to 6.87 % in the total neutron fluence rate and 7.18 % in H~*(10) values, despite the differences in the shape of the spectra obtained for the irradiation position. Comparing with the measured values, the H~*(10) values obtained with the unfolding programs exhibit a maximum relative deviation of 12.19 %. Taking into account the associated uncertainties, MC simulations seem to be in reasonable agreement with measurements. A maximum relative deviation of 15.65 % between computed and measured H~*(10) values was obtained. The computed count rates were applied to the unfolding programs to calculate the total neutron fluence rate and a maximum deviation of 12.83 % was obtained between the original values calculated by NSDann. A sensitivity test showed that the NSDann unfolding program is very sensitive to the uncertainties of the BSS count rates.
机译:马德里工业大学核工程系的中子测量1实验室由一个类似地堡的房间组成,用于中子剂量学研究和测量。该设施包括一个放置在中子榴弹炮容器内的74GBq〜(241)Am-Be中子源。可以将源移动到照射位置或存储位置。在这项工作中,使用了Bonner球形光谱仪(BSS)来测量源在两个位置的中子注量谱。使用校准的中子面积监测仪LB6411(Berthold)测量环境剂量当量率H〜*(10)。测得的计数率用作NSDann和NSDUAZ展开程序的输入,以获得中子注量谱和H *(10)。使用Monte Carlo(MC)模拟方法对系统进行建模,并计算测量点的中子注量率和环境剂量当量率。 NSDUAZ和NSDann的比较导致总中子注量率的相对偏差高达6.87%,H〜*(10)值的相对偏差高达7.18%,尽管对于照射位置获得的光谱形状有所不同。与测量值相比,通过展开程序获得的H〜*(10)值显示出最大相对偏差为12.19%。考虑到相关的不确定性,MC模拟似乎与测量值合理吻合。计算和测得的H〜*(10)值之间的最大相对偏差为15.65%。将计算出的计数率应用于展开程序以计算总中子注量率,并且在由NSDann计算出的原始值之间获得的最大偏差为12.83%。敏感性测试表明,NSDann展开程序对BSS计数率的不确定性非常敏感。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2013年第3期|346-355|共10页
  • 作者单位

    Institute Superior Tecnico, Instituto Tecno1ogico e Nuclear, Universidade Tecnica de Lisboa, Estrada Nacional 10, Sacavem 2686-953, Portugal;

    Departamento de Ingenieria Nuclear, Universidad Politecnica de Madrid, C. Jose Gutierrez Abascal, 2,Madrid E-28006, Espana;

    Departamento de Ingenieria Nuclear, Universidad Politecnica de Madrid, C. Jose Gutierrez Abascal, 2,Madrid E-28006, Espana;

    Institute Superior Tecnico, Instituto Tecnologico e Nuclear, Universidade Tecnica de Lisboa, Estrada Nacional 10, Sacavem 2686-953, Portugal;

    Institute Superior Tecnico, Instituto Tecnologico e Nuclear, Universidade Tecnica de Lisboa, Estrada Nacional 10, Sacavem 2686-953, Portugal;

    Unidad Academica de Estudios Nucleares de la Universidad Autonoma de Zacatecas, C. Cipres 10, Fracc. La Pefiuela, 98060 Zacatecas, Zac, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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