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Radiation dose along North American transcontinental flight paths during quiescent and disturbed geomagnetic conditions

机译:静态和扰动地磁条件下沿北美洲际飞行​​路线的辐射剂量

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摘要

Commercial aircraft flights across the North American continent encounter a small radiation exposure (normally <20 μSv) from galactic cosmic radiation. During October and November 2003, there was significant perturbation in the cosmic ray flux near the Earth due to extraordinary activity on the Sun. The associated sequence of solar flares and coronal mass ejections resulted in a significant decrease in the background galactic cosmic radiation levels upon which there were sudden impulsive increases from solar cosmic ray events. These fluctuations in the cosmic ray intensity were detectable at commercial aircraft cruising altitudes and at sea level cosmic ray neutron-monitoring stations. This paper compares the in-flight radiation dose data acquired during the disturbed conditions on 29 October 2003 with the dose data acquired over the same route in January 2004 during quiescent geomagnetic conditions. This comparison shows that during Forbush decreases or ground level cosmic ray increases, the CARI aircraft radiation dose prediction software does not adequately describe the radiation exposure from cosmic radiation.
机译:横跨北美大陆的商用飞机在飞行中会受到银河宇宙射线的少量辐射照射(通常<20μSv)。在2003年10月至11月期间,由于太阳上的异常活动,地球附近的宇宙射线通量出现了明显的扰动。太阳耀斑和日冕物质抛射的相关序列导致背景星系宇宙辐射水平显着下降,在此背景下,太阳宇宙射线事件突然增加了脉冲。在商用飞机巡航高度和海平面宇宙射线中子监测站,可以检测到宇宙射线强度的这些波动。本文将2003年10月29日在扰动条件下获取的飞行中辐射剂量数据与2004年1月在静态地磁条件下通过同一路径获取的剂量数据进行了比较。这种比较表明,在Forbush减少或地面水平的宇宙射线增加期间,CARI飞机的辐射剂量预测软件无法充分描述宇宙射线的辐射暴露。

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