粉煤灰砖γ射线暴露累积因素及快中子去除截面的综合研究

IF 18.6 1区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Journal of Advanced Ceramics Pub Date : 2013-08-21 DOI:10.1155/2013/967264
Vishwanath P. Singh, N. M. Badiger
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引用次数: 25

摘要

采用几何级数法(GP)研究了能量为0.015 ~ 15 MeV、穿透深度为40 mfp的粉煤灰砖的γ射线暴露累积因子。粉煤灰砖的EBFs取决于光子能量、穿透深度和元素的化学组成。粉煤灰砖的暴露累积因子(EBF)有明显的变化。发现在低、高能光子区,ebf很小,而在中能区,ebf很大。在整个感兴趣的0.015至15 MeV的能量区域内,砖的EBF与10 mfp以下的等效原子序数成反比。在1.5 MeV光子能量下,粉煤灰、泥砖和普通砖的ebf相似。粉煤灰砖的EBF高于泥砖和普通砖。还计算了粉煤灰砖、泥砖和普通砖的快中子去除截面,发现它们的顺序是一致的。本研究对粉煤灰砖材料的屏蔽效果和剂量估算具有直接的指导意义。
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A Comprehensive Study on Gamma-Ray Exposure Build-Up Factors and Fast Neutron Removal Cross Sections of Fly-Ash Bricks
Geometric progression (GP) method was utilized to investigate gamma-ray exposure build-up factors of fly-ash bricks for energies from 0.015 to 15 MeV up to 40 mfp penetration depth. The EBFs of the fly-ash bricks are dependent upon the photon energy, penetration depths, and the chemical compositions of the elements. Appreciable variations in exposure build-up factor (EBF) are noted for the fly-ash bricks. The EBFs were found to be small in low and high photon energy regions whereas very large in medium energy region. EBF of the bricks is inversely proportional to equivalent atomic number below 10 mfp for entire energy region of interest 0.015 to 15 MeV. The EBFs of fly-ash, brick of mud, and common brick were similar at 1.5 MeV photon energy. The EBF of the fly-ash bricks was found to be higher than that of the brick of mud, and common brick. The fast neutron removal cross sections of the fly-ash bricks, brick of mud, and common bricks were also calculated which were found to be in the same order. It is expected that this study should be very directly useful for shielding effectiveness of fly-ash brick materials and dose estimation.
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来源期刊
Journal of Advanced Ceramics
Journal of Advanced Ceramics MATERIALS SCIENCE, CERAMICS-
CiteScore
21.00
自引率
10.70%
发文量
290
审稿时长
14 days
期刊介绍: Journal of Advanced Ceramics is a single-blind peer-reviewed, open access international journal published on behalf of the State Key Laboratory of New Ceramics and Fine Processing (Tsinghua University, China) and the Advanced Ceramics Division of the Chinese Ceramic Society. Journal of Advanced Ceramics provides a forum for publishing original research papers, rapid communications, and commissioned reviews relating to advanced ceramic materials in the forms of particulates, dense or porous bodies, thin/thick films or coatings and laminated, graded and composite structures.
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