Seismic Evaluation of Lava Tubes Subjected to Moonquakes. Seifamiri, H., P., M., R., B., N., B., & R., d. M. In pages 641 - 651, Denver, CO, United states, 2023. Frequency contents;Geotechnical;Human habitats;Key influencing factors;Seismic evaluation;
Paper abstract bibtex In this paper, the seismic response of lava tubes was estimated. Several dimensionless numerical analyses were carried out for various dimensionless geometries. The effects of key influencing factors such as the depth of the lava tubes, the gravitational effect of the Moon, and the frequency content of the incident motion on the dynamic response of lava tubes were studied. The findings can be useful in geotechnical moonquake engineering and lunar seismology and provide some practical insights into the design of future moonquake-resilient human habitats on the Moon.
© ASCE.
@inproceedings{20230413425940 ,
language = {English},
copyright = {Compilation and indexing terms, Copyright 2023 Elsevier Inc.},
copyright = {Compendex},
title = {Seismic Evaluation of Lava Tubes Subjected to Moonquakes},
journal = {Earth and Space 2022: Space Exploration, Utilization, Engineering, and Construction in Extreme Environments - Selected Papers from the 18th Biennial International Conference on Engineering, Science, Construction, and Operations in Challenging Environments},
author = {Seifamiri, Hamed and P., Maghoul and R., Boudreault and N., Bouaanani and R., de Moraes},
year = {2023},
pages = {641 - 651},
address = {Denver, CO, United states},
abstract = {<div data-language="eng" data-ev-field="abstract">In this paper, the seismic response of lava tubes was estimated. Several dimensionless numerical analyses were carried out for various dimensionless geometries. The effects of key influencing factors such as the depth of the lava tubes, the gravitational effect of the Moon, and the frequency content of the incident motion on the dynamic response of lava tubes were studied. The findings can be useful in geotechnical moonquake engineering and lunar seismology and provide some practical insights into the design of future moonquake-resilient human habitats on the Moon.<br/></div> © ASCE.},
key = {Moon},
keywords = {Seismology;},
note = {Frequency contents;Geotechnical;Human habitats;Key influencing factors;Seismic evaluation;},
URL = {http://dx.doi.org/10.1061/9780784484470.056},
}
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