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首页> 外文期刊>Journal of geophysical research. Planets >Natural Radiation Shielding on Mars Measured With the MSL/RAD Instrument
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Natural Radiation Shielding on Mars Measured With the MSL/RAD Instrument

机译:天然辐射屏蔽在火星上测量韩剧/ RAD工具

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摘要

Protecting astronauts from the effects of space radiation remains one major stepping stone for the exploration of Mars. Long-term exposure to radiation can lead to severe health effects and affects allowable mission duration. Mission designs for Mars include the use of radiation shelters that provide additional mass to surround the astronauts. This leads to incoming radiation losing energy through ionization processes. This is important during solar energetic particle events when solar protons can reach the surface with high intensities. Additionally, shelters provide a long-term reduction of the exposure to galactic cosmic rays. As mass is an important time and cost factor in space travel, using natural sheltering already on Mars is a desirable option. One candidate is to use subterranean lava tubes that provide shelter from the radiation from above. Other options include craters, cliff walls, or rock overhangs. Here, we present the first in situ measurements of radiation sheltering by natural environments on the surface of Mars. The data were acquired with the Radiation Assessment Detector (RAD) on board the Curiosity rover in Gale crater on Mars. We show measurements from when Curiosity was parked close to Butte M12 in the Murray Buttes formation, which blocked out 19% of the surrounding sky view. During this time, from Mars Science Laboratory (MSL) sol 1456-1467, we find a decrease of 4% in the expected dose rate, and a decrease of 7.5% in the neutral particle environment. This proof of principle is an important step to validate plans to use natural sheltering on Mars.
机译:保护宇航员免受空间的影响辐射仍是一个主要的垫脚石探索火星。辐射会导致严重的健康影响和影响允许任务持续时间。设计包括使用火星辐射避难所周围提供额外的质量宇航员。失去能量通过电离过程。在太阳高能粒子是重要的当太阳质子事件可以到达地表高强度。提供一个长期接触的减少银河宇宙射线。太空旅行的时间和成本因素,使用自然保护已经在火星上是可取的选择。从辐射管提供避难所从上面。墙壁,悬臂或岩石。第一次原位测量的辐射表面上保护自然环境的火星。辐射探测器(RAD)在评估好奇号在火星盖尔陨坑。测量时的好奇心停在穆雷孤峰M12山丘形成,封锁了周围19%的天空视图。实验室(实验室)溶胶1456 - 1467,我们找到一个在预期剂量率减少4%,减少7.5%的中性粒子环境。验证计划使用自然的重要一步在火星上避难。

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