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Astronaut EVA exposure estimates from CAD model spacesuit geometry

机译:CAD模型SPACESUIT几何形状的宇航员EVA曝光估计

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Ongoing assembly and maintenance activities at the International Space Station (ISS) require much more extravehicular activity (EVA) than did the earlier U.S. Space Shuttle missions. It is thus desirable to determine and analyze, and possibly foresee, as accurately as possible what radiation exposures crew members involved in EVAs will experience in order to minimize risks and to establish exposure limits that must not to be exceeded. A detailed CAD model of the U.S. Space Shuttle EVA Spacesuit, developed at NASA Langley Research Center (LaRC), is used to represent the directional shielding of an astronaut; it has detailed helmet and backpack structures, hard upper torso, and multilayer space suit fabric material. The NASA Computerized Anatomical Male and Female (CAM and CAF) models are used in conjunction with the space suit CAD model for dose evaluation within the human body. The particle environments are taken from the orbit-averaged NASA AP8 and AE8 models at solar cycle maxima and minima. The transport of energetic particles through space suit materials and body tissue is calculated by using the NASA LaRC HZETRN code for hadrons and a recently developed deterministic transport code, ELTRN, for electrons. The doses within the CAM and CAF models are determined from energy deposition at given target points along 968 directional rays convergent on the points and are evaluated for several points on the skin and within the body. Dosimetric quantities include contributions from primary protons, light ions, and electrons, as well as from secondary brehmsstrahlung and target fragments. Directional dose patterns are displayed as rays and on spherical surfaces by the use of a color relative intensity representation.
机译:在国际空间站(ISS)的持续装配和维护活动需要更多的宽容活动(EVA),而不是早先的美国航天飞机任务。因此,希望尽可能准确地确定和分析和分析,并且可能需要准确地涉及EVAS中涉及的辐射曝光机组人员,以便最大限度地减少风险并建立不得超过的曝光限制。在美国宇航局兰利研究中心(LARC)开发的美国航天飞机EVA SPACESUIT的详细CAD模型用于代表宇航员的定向屏蔽;它具有详细的头盔和背包结构,硬上躯干和多层空间衣服织物材料。 NASA计算机化解剖学男性和雌性(CAM和CAF)模型与空间适用于人体中的剂量评估的空间套装CAD模型一起使用。颗粒环境取自轨道平均的NASA AP8和AE8模型,在太阳循环Maxima和MILIMA。通过使用NASA LARC HZETN码来计算通过空间套装材料和身体组织来运输能量颗粒通过用于HADRONS的NASA LARC HZETN码,并且最近开发的确定性传输代码ELTRN。凸轮和CAF模型内的剂量由沿着968方向射线收敛的给定目标点处的能量沉积确定,并且在皮肤和身体内评估几个点。剂量分子包括来自初级质子,光离子和电子以及来自次级Brehmsstrahlung和靶碎片的贡献。定向剂量图案通过使用颜色相对强度表示显示为光线和球形表面。

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