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RECENT OBSERVATIONS OF SPACE RADIATION ENVIRONMENT IN A HUMAN PHANTOM ONBOARD ISS BY LIULIN-5 PARTICLE TELESCOPE

机译:柳林五号望远镜在人类幻影车载ISS空间辐射环境中的近期观测

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The radiation field onboard the International Space Station (ISS) is complex, composed of galactic cosmic rays,trapped radiation of the Earth radiation belts, solar energetic particles, albedo particles from Earth's atmosphere andthe secondary radiation produced in the shielding materials of the spacecraft and in human body.An essential parameter for assessment of radiation hazards to human in space is the organ dose determination.Human phantoms equipped with active and passive radiation detectors are used to obtain a better knowledge of thedose distribution inside the human body.The Liulin-5 charged particle telescope has directly observed the radiation environment in the tissue-equivalentphantom of MATROSHKA-R international project on ISS during the period June 2007-June 2010. The objectives ofLiulin-5 experiment are studying the dynamics of depth-dose distribution of the different components of the orbitalradiation field inside the phantom and mapping the radiation environment and its variations with time and orbitalparameters (such as solar cycle, solar flare events, inclination and altitude). The particle telescope Liulin-5 measurestime-resolved linear energy transfer spectrum, flux and absorbed dose rates for electrons, protons and thebiologically relevant heavy ion components of the cosmic radiation.In this report we present new results of Liulin-5 experiment for radiation quantities obtained from differentcomponents of the complex radiation field in low-Earth orbit. Measurements show that due to the self-shielding ofthe phantom from trapped protons the absorbed doses close to the centre of the phantom decrease by a factor of 1.6-1.8 compared to the doses at depths corresponding to the depth of blood forming organs in human body. It is shownthat the shielding provided from Shuttle and connected with Shuttle docking change of ISS attitude leads to adecrease of daily absorbed doses from trapped protons. During the minimum of the solar activity in cycle 23 theaverage dose equivalent at 40 mm depth is 590±32 μSV/day and the galactic cosmic rays (GCR) contribute at least70% of total dose equivalent at that depth. The comparison with results obtained from TLD detectors in the sphericalphantom during 2007-2008 show good agreement.
机译:国际空间站(ISS)上的辐射场很复杂,由银河系宇宙射线组成, 地球辐射带的捕获辐射,太阳高能粒子,来自地球大气层的反照率粒子以及 在航天器的屏蔽材料和人体中产生的二次辐射。 评估人体空间辐射危害的基本参数是确定器官剂量。 配备主动和被动辐射探测器的人体模型可用于更好地了解人体模型。 人体内部的剂量分布。 柳林五号带电粒子望远镜直接观察了当量组织中的辐射环境 2007年6月至2010年6月期间关于国际空间站的MATROSHKA-R国际项目的模型。 Liulin-5实验正在研究轨道不同成分的深度剂量分布动力学 体模内的辐射场并绘制辐射环境及其随时间和轨道的变化图 参数(例如太阳周期,太阳耀斑事件,倾斜度和高度)。柳林五号粒子望远镜的对策 时间分辨的线性能量转移谱,电子,质子和电子的通量和吸收剂量率 宇宙辐射中与生物有关的重离子成分。 在本报告中,我们介绍了六林5号实验从不同辐射源获得的辐射量的新结果。 低地球轨道上复杂辐射场的组成部分。测量表明,由于 被困质子的体模靠近体模中心的吸收剂量减少了1.6倍 1.8与在对应于人体血液形成器官深度的深度处的剂量相比。如图所示 航天飞机提供的与航天飞机对接的ISS姿态改变相连接的屏蔽层导致 被困质子减少的每日吸收剂量。在周期23的太阳活动最小期间, 在40毫米深度处的平均等效剂量为590±32μSV/天,并且银河系宇宙射线(GCR)至少贡献 在该深度相当于总剂量的70%。与球形TLD检测器获得的结果进行比较 幻影在2007-2008年间表现出良好的一致性。

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