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Evaluation of the fluence to dose conversion coefficients for high energy neutrons using a voxel phantom coupled with the GEANT4 code

机译:使用体素体模结合GEANT4代码评估高能中子的注量对剂量转换系数的影响

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摘要

Crews working on present-day jet aircraft are a large occupationally exposed group with a relatively high average effective dose from Galactic cosmic radiation. Crews of future high-speed commercial flying at higher altitudes would be even more exposed. To help reduce the significant uncertainties in calculations of such exposures, the male adult voxels phantom MAX, developed in the Nuclear Energy Department of Pernambuco Federal University in Brazil, has been coupled with the Monte Carlo simulation code GEANT4. This toolkit, distributed and upgraded from the international scientific community of CERN/Switzerland, simulates thermal to ultrahigh energy neutrons transport and interactions in the matter. The high energy neutrons are pointed as the component that contribute about 70% of the neutron effective dose that represent the 35% to 60% total dose at aircraft altitude. In this research calculations of conversion coefficients from fluence to effective dose are performed for neutrons of energies from 100 MeV up to 1 GeV, irradiating MAX with mono-energetic beams in the mode anterior-posterior. An alternative methodology is developed too, using the atmospheric neutron spectrum simulated with GEANT4 code at aircraft altitude instead of the traditional method that uses mono-energetic beams. To obtain the neutron spectrum 1.5 ? 10/sup 5/ extensive atmospheric showers are simulated by cosmic ray interactions with atmospheric atoms. The main characteristics of the spectrum are in agreement with literature confirming the validity of GEANT4. For 100 MeV energy the conversion coefficient calculated with spectrum shows a decrease of 8%, pointing out the importance of the environment influence.
机译:在当今的喷气式飞机上工作的机组人员是一个职业大量暴露的人群,来自银河系宇宙辐射的平均有效剂量相对较高。未来在高海拔地区进行高速商业飞行的机组人员将更加暴露。为了减少这种暴露的显着不确定性,巴西伯南布哥联邦大学核能系开发的男性成年体素幻象MAX与蒙特卡罗模拟代码GEANT4结合使用。该工具包是从CERN /瑞士的国际科学界分发和升级的,它模拟了从热到中子的热中子传输和相互作用。高能中子被认为是构成中子有效剂量的70%的成分,相当于飞机高度总剂量的35%至60%。在这项研究中,对能量从100 MeV到1 GeV的中子进行能量密度从有效剂量到有效剂量的转换系数的计算,以单能束在前后模式下照射MAX。还开发了一种替代方法,该方法使用了在飞机高度用GEANT4代码模拟的大气中子光谱,而不是使用单能量束的传统方法。获得1.5的中子光谱10 / sup 5 /广泛的大气阵雨是通过宇宙射线与大气原子的相互作用来模拟的。光谱的主要特征与文献一致,证实了GEANT4的有效性。对于100 MeV的能量,通过光谱计算得出的转换系数降低了8%,指出了环境影响的重要性。

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  • 作者

    Paganini, S; Vilela, E;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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