N. Kalapodis, G. Kampas, O.-J. Ktenidou | 2020 | Acta Astronautica
DOI 10.1016/j.actaastro.2020.05.038Review state
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This paper reviews the design of extraterrestrial structures, focusing on lunar and Martian regolith properties, geotechnical engineering, and habitat concepts. It compiles existing literature into tables and discusses mechanical properties, chemical composition, and potential foundation methods for extraterrestrial habitats. The provided text appears to be a series of URLs related to an academic paper or document, likely from a journal or conference. The URLs point to various elements of the document, such as figures, tables, and supplementary materials. The URLs are structured with identifiers like 'gr1', 'gr2', etc., which likely refer to specific figures or images, and 'si1', 'si10', etc., which may refer to supplementary information. The URLs are formatted with query parameters like 'httpAccept=%2A%2F%2A', which suggests they are intended for use with specific web clients or APIs. The text does not contain any meaningful content or data that can be extracted directly, and it appears to be a technical artifact rather than a human-readable document. The paper presents a review of geotechnical engineering aspects related to the design of extraterrestrial structures, focusing on l
These are the records this paper contributes to the simulant, returned sample, method, and property browsers.
Lunar soil simulant
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Cone Penetration Test
Mechanical properties
Soil Mechanics Experiment
Mechanical properties
Lunar Regolith 3D Printing
Material Science
Inflatable Lunar Habitat Deployment
Structural Engineering
Lunar Seismic Activity Analysis
Geophysics
Martian Seismic Activity Analysis
Geophysics
Lunar Resource Utilization
Materials Science
Martian Resource Utilization
Materials Science
Lunar Regolith 3D Printing
Simulates the use of lunar regolith as a building material for constructing habitats and infrastructure on the Moon.
Inflatable Lunar Habitats
Simulates the design and deployment of inflatable structures for human habitation on the Moon and Mars.
Lunar Seismic Activity
Simulates the study of seismic activity on the Moon and its implications for the stability of lunar structures.
Martian Seismic Activity
Simulates the study of seismic activity on Mars and its implications for the stability of Martian structures.
Lunar Resource Utilization
Simulates the extraction and use of lunar resources such as regolith and basalts for construction and life support systems.
Martian Resource Utilization
Simulates the extraction and use of Martian resources for construction and life support systems.
Lunar Lava Tube Stability
Simulates the structural stability of lunar lava tubes as potential habitats for human colonization.
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