人类月球活动辐射安全准则

IF 12.9 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Nature Astronomy Pub Date : 2024-07-24 DOI:10.1038/s41550-024-02287-8
Mikhail Dobynde, Jingnan Guo
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引用次数: 0

摘要

有害太空辐射的影响是未来探月者最担心的问题之一。在这里,我们利用经过数据验证的月球辐射环境和剂量(REDMoon)模型,为受辐射限制的月球基地的不同方案制定任务时间表。我们以最近两个太阳周期(2000-2022 年)为基准,考虑了月球表面和地表下的栖息地,这些栖息地具有不同的岩石和铝屏蔽。与行星际空间相比,月球表面的背景银河宇宙射线(GCR)照射量约为行星际空间的 66%,在地表下甚至会略有增加,然后在约 3 米深处降至可忽略不计的值。如果屏蔽不足,单次太阳粒子事件期间的表面剂量有时会超过全年的 GCR 暴露,导致立即更换乘员。我们的工作为未来的人类月球基地和探测成本估算提供了辐射缓解方面的考虑。
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Guidelines for radiation-safe human activities on the Moon
The effects of harmful space radiation are one of the biggest concerns for future lunar explorers. Here, we use a data-validated model, the Radiation Environment and Dose on the Moon (REDMoon), to create mission schedules for different scenarios of lunar bases limited by radiation constraints. We consider habitats at the surface and subsurface of the Moon with different regolith and aluminium shielding using the last two solar cycles (2000–2022) as a baseline. The exposure due to background galactic cosmic rays (GCRs) is about 66% on the lunar surface than in interplanetary space and can even slightly increase beneath the surface before it decreases to a negligible value at about 3 m depth. If the shielding is insufficient, the surface dose during a single solar particle event could sometimes exceed annual GCR exposure, leading to an immediate replacement of the crew. Our work provides radiation-mitigation considerations for future human lunar bases and exploration cost estimates. A data-validated model for the lunar radiation environment is used to draw guidelines for safe future activities on the Moon, depending on the thickness and type of habitat shielding. Unless the base is at a depth of at least 3 m, some degree of crew rotation is needed, up to several times per year.
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来源期刊
Nature Astronomy
Nature Astronomy Physics and Astronomy-Astronomy and Astrophysics
CiteScore
19.50
自引率
2.80%
发文量
252
期刊介绍: Nature Astronomy, the oldest science, has played a significant role in the history of Nature. Throughout the years, pioneering discoveries such as the first quasar, exoplanet, and understanding of spiral nebulae have been reported in the journal. With the introduction of Nature Astronomy, the field now receives expanded coverage, welcoming research in astronomy, astrophysics, and planetary science. The primary objective is to encourage closer collaboration among researchers in these related areas. Similar to other journals under the Nature brand, Nature Astronomy boasts a devoted team of professional editors, ensuring fairness and rigorous peer-review processes. The journal maintains high standards in copy-editing and production, ensuring timely publication and editorial independence. In addition to original research, Nature Astronomy publishes a wide range of content, including Comments, Reviews, News and Views, Features, and Correspondence. This diverse collection covers various disciplines within astronomy and includes contributions from a diverse range of voices.
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