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Variations of the flux and the energy spectrum of neutrons born in the galactic cosmic ray proton interactions with the matter of Earth's satellites and orbital stations

机译:银河系宇宙射线质子与地球卫星和轨道站之间的相互作用所产生的中子通量和能谱的变化

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This paper presents the energy spectra of secondary neutrons obtained from Monte Carlo simulations of the interactions of protons of galactic cosmic rays with the material of a spacecraft, and also the variation of the fluxes of these particles as a function of latitude. The variations of the secondary neutron flux with changing geometry and orientation of the craft, and detector position were evaluated as well. The simulations were conducted over a wide range of masses of spacecraft, from 300kg (Earth Probe Total Ozone Mapping Spectrometer) to 420,000kg (International Space Station in its full configuration), with calculations for the ISS also being carried out for its first development stage (mass of approx. 20,400 kg) and its configuration with a mass of approx. 8 1,000 kg. The calculations were carried out for circular orbits at altitudes of 500km and for the energy intervals 0.001-10MeV and 10-10,000MeV, for both maximum and minimum solar activity. The results obtained agree reasonably well with results from previous calculations and do not contradict experimental data. (C) 2007 Elsevier Ltd. All rights reserved.
机译:本文介绍了从银河宇宙射线质子与航天器材料相互作用的蒙特卡洛模拟获得的次级中子的能谱,以及这些粒子的通量随纬度的变化。还评估了二次中子通量随飞行器几何形状和方向的变化以及探测器位置的变化。在从300千克(地球探针总臭氧测绘光谱仪)到420,000千克(完整配置的国际空间站)的各种航天器上进行了模拟,并在其第一个开发阶段进行了国际空间站的计算(质量约20,400公斤),其配置重量约为8 1,000公斤。对于最大和最小太阳活动,对500 km高度的圆形轨道以及0.001-10MeV和10-10,000MeV的能量间隔进行了计算。获得的结果与以前的计算结果相当吻合,并且与实验数据没有矛盾。 (C)2007 Elsevier Ltd.保留所有权利。

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