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Dose estimation for astronauts using dose conversion coefficients calculated with the PHITS code and the ICRP/ICRU adult reference computational phantoms

机译:使用PHITS码和ICRP / ICRU成人参考计算体模计算的剂量转换系数估算宇航员的剂量

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Absorbed-dose and dose-equivalent rates for astronauts were estimated by multiplying fluence-to-dose conversion coefficients in the units of Gy.cm and Sv.cm~2, respectively, and cosmic-ray fluxes around spacecrafts in the unit of cm~(-2) s~(-1). The dose conversion coefficients employed in the calculation were evaluated using the general-purpose particle and heavy ion transport code system PHITS coupled to the male and female adult reference computational phantoms, which were released as a common ICRP/ICRU publication. The cosmic-ray fluxes inside and near to spacecrafts were also calculated by PHITS, using simplified geometries. The accuracy of the obtained absorbed-dose and dose-equivalent rates was verified by various experimental data measured both inside and outside spacecrafts. The calculations quantitatively show that the effective doses for astronauts are significantly greater than their corresponding effective dose equivalents, because of the numerical incompatibility between the radiation quality factors and the radiation weighting factors. These results demonstrate the usefulness of dose conversion coefficients in space dosimetry.
机译:通过分别以Gy.cm和Sv.cm〜2为单位的注量-剂量转换系数与以cm〜为单位的航天器周围的宇宙射线通量相乘来估算宇航员的吸收剂量和剂量当量率。 (-2)秒〜(-1)。计算中使用的剂量转换系数是使用与男性和女性成年参考计算体模耦合的通用粒子和重离子迁移编码系统PHITS进行评估的,该体模作为普通ICRP / ICRU出版物发布。 PHITS还使用简化的几何结构计算了航天器内部和附近的宇宙射线通量。通过在航天器内部和外部测量的各种实验数据验证了所获得的吸收剂量和剂量当量率的准确性。定量计算表明,由于辐射质量因数和辐射权重因数在数值上不兼容,宇航员的有效剂量明显大于其相应的有效剂量当量。这些结果证明了剂量转换系数在空间剂量测定中的有用性。

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