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Comparisons of several transport models in their predictions in typical space radiation environments

机译:典型空间辐射环境中几种传输模型的预测比较

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摘要

We have used several transport codes to calculate dose and dose equivalent values as well as the particle spectra behind a slab or inside a spherical shell shielding in typical space radiation environments. Two deterministic codes, HZETRN and UPROP, and two Monte Carlo codes, FLUKA and Geant4, are included. A soft solar particle event, a hard solar particle event, and a solar minimum galactic cosmic rays environment are considered; and the shielding material is either aluminum or polyethylene. We find that the dose values and particle spectra from HZETRN are in general rather consistent with Geant4 except for neutrons. The dose equivalent values from HZETRN and Geant4 are not far from each other, but the HZETRN values behind shielding are often lower than the Geant4 values. Results from FLUKA and Geant4 are mostly consistent for considered cases. However, results from the legacy code UPROP are often quite different from the other transport codes, partly due to its non-consideration of neutrons. Comparisons for the spherical shell geometry exhibit the same qualitative features as for the slab geometry. In addition, results from both deterministic and Monte Carlo transport codes show that the dose equivalent inside the spherical shell decreases from the center to the inner surface and this decrease is large for solar particle events; consistent with an earlier study based on deterministic radiation transport results. This study demonstrates both the consistency and inconsistency among these transport models in their typical space radiation predictions; further studies will be required to pinpoint the exact physics modules in these models that cause the differences and thus may be improved.
机译:在典型的空间辐射环境中,我们使用了几种传输代码来计算剂量和剂量当量值以及平板后面或球形外壳屏蔽内部的粒子光谱。包括两个确定性代码HZETRN和UPROP,以及两个蒙特卡洛代码FLUKA和Geant4。考虑了软太阳粒子事件,硬太阳粒子事件和太阳最小银河宇宙射线环境;屏蔽材料是铝或聚乙烯。我们发现,除中子外,HZETRN的剂量值和粒子光谱通常与Geant4一致。来自HZETRN和Geant4的剂量当量值彼此相距不远,但是屏蔽后的HZETRN值通常低于Geant4值。对于所考虑的案例,FLUKA和Geant4的结果大部分是一致的。但是,遗留代码UPROP的结果通常与其他传输代码有很大不同,部分原因是它不考虑中子。球壳几何形状的比较显示出与平板几何形状相同的定性特征。另外,确定性和蒙特卡洛输运代码的结果都表明,球形壳内部的剂量当量从中心到内表面减小,并且对于太阳粒子事件而言,这种减小很大。与基于确定性辐射传输结果的早期研究一致。这项研究证明了这些传输模型在其典型的空间辐射预测中的一致性和不一致性。需要进行进一步的研究,以查明这些模型中导致差异的确切物理模块,从而加以改进。

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  • 来源
    《Advances in space research》 |2012年第4期|p.797-806|共10页
  • 作者单位

    C-209 Howell Science Complex, Department of Physics, East Carolina University, Greenville, NC 27858, United States;

    NASA Marshall Space Flight Center, Huntsville, A L 35805, United States;

    NASA Marshall Space Flight Center, Huntsville, A L 35805, United States;

    University of Texas M. D. Anderson Cancer Center, Houston, TX 77030, United States;

    NASA Langley Research Center, Hampton, VA 23681, United States;

    NASA Marshall Space Flight Center, Huntsville, A L 35805, United States,University of Alabama-Huntsville, CSPAR, 320 Sparkman Drive, Huntsville, AL 35805-1012, United States;

    Department of Physics, Rice University, Houston, TX 77005, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    transport code; space radiation; radiation shielding; solar particle events; galactic cosmic rays;

    机译:运输代码;空间辐射;辐射屏蔽太阳粒子事件;银河宇宙射线;

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