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Verification of shielding effect by the water-filled materials for space radiation in the International Space Station using passive dosimeters

机译:使用无源剂量计验证充填材料对国际空间站中空间辐射的屏蔽作用

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摘要

The dose reduction effects for space radiation by installation of water shielding material ("protective curtain") of a stack board consisting of the hygienic wipes and towels have been experimentally evaluated in the International Space Station by using passive dosimeters. The averaged water thickness of the protective curtain was 6.3 g/cm~2. The passive dosimeters consisted of a combination of thermoluminescent detectors (TLDs) and plastic nuclear track detectors (PNTDs). Totally 12 passive dosimeter packages were installed in the Russian Service Module during late 2010. Half of the packages were located at the protective curtain surface and the other half were at the crew cabin wall behind or aside the protective curtain. The mean absorbed dose and dose equivalent rates are measured to be 327 μGy/day and 821 uSv/day for the unprotected packages and 224 μGy/day and 575 μSv/day for the protected packages, respectively. The observed dose reduction rate with protective curtain was found to be 37 ± 7% in dose equivalent, which was consistent with the calculation in the spherical water phantom by PHITS. The contributions due to low and high LET particles were found to be comparable in observed dose reduction rate. The protective curtain would be effective shielding material for not only trapped particles (several 10 MeV) but also for low energy galactic cosmic rays (several 100 MeV). The properly utilized protective curtain will effectively reduce the radiation dose for crew living in space station and prolong long-term mission in the future.
机译:在国际空间站中,已经通过使用被动剂量计通过实验评估了通过在由卫生巾和毛巾组成的堆叠板上安装隔水材料(“防护帘”)来减少空间辐射的剂量。防护帘的平均水厚为6.3 g / cm〜2。无源剂量计由热发光探测器(TLD)和塑料核径迹探测器(PNTD)组成。在2010年底,俄罗斯服务模块共安装了12个被动剂量计套件。其中一半套件位于防护帘表面,另一半位于机舱壁在防护帘后面或旁边。对于未保护的包装,平均吸收剂量和剂量当量率的测量值分别为327μGy/天和821 uSv /天,对于受保护的包装分别为224μGy/天和575μSv/天。发现用防护帘观察到的剂量减少率为剂量当量的37±7%,这与PHITS在球形水体模中的计算结果一致。发现在观察到的剂量减少率方面,由低和高LET粒子引起的贡献是可比的。防护帘不仅对被捕获的粒子(几个10 MeV)而且对于低能银河宇宙射线(几个100 MeV / n)都是有效的屏蔽材料。正确使用的防护帘将有效减少空间站工作人员的辐射剂量,并延长未来的长期任务。

著录项

  • 来源
    《Advances in space research》 |2014年第1期|1-7|共7页
  • 作者单位

    Radiation Measurement Research Section, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba 263-8555, Japan;

    State Scientific Center of Russian Federation, Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia;

    Nuclear Physics Institute, Academy of Sciences of the Czech Republic, Prague, Czech Republic;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, Chiba, Japan The Research Institute of Nuclear Engineering, University of Fukui, Fukui, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, Chiba, Japan;

    Radiation Measurement Research Section, National Institute of Radiological Sciences, Chiba, Japan;

    Nagase Landauer Ltd., Ibaraki, Japan;

    Nagase Landauer Ltd., Ibaraki, Japan;

    Nagase Landauer Ltd., Ibaraki, Japan;

    State Scientific Center of Russian Federation, Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia;

    State Scientific Center of Russian Federation, Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia;

    Rocket Space Corporation, Energia, Moscow Region, Russia;

    State Scientific Center of Russian Federation, Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia;

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

    Space radiation dosimetry; Water shield; Dose reduction; Passive dosimeters; CR-39; TLD;

    机译:空间辐射剂量学;水盾;减少剂量;被动剂量计CR-39;顶级域名;

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