Multi-parametric analysis of the lunar internal structure based on space data

© SGEM2017 All Rights Reserved. Numerous space agencies and powers have announced their plans on lunar exploration for the next years. The main purposes are preparation and creation of long-term scientific, technological, experimental, and industrial bases on the near side of the Moon and in the are...

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Main Authors: Andreev A., Nefedyev Y., Demina N., Petrova N., Zagidullin A.
Format: Conference Object
Language:unknown
Published: 2017
Subjects:
Online Access:http://dspace.kpfu.ru/xmlui/handle/net/129994
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spelling ftkazanuniv:oai:dspace.kpfu.ru:net/129994 2023-05-15T18:22:26+02:00 Multi-parametric analysis of the lunar internal structure based on space data Andreev A. Nefedyev Y. Demina N. Petrova N. Zagidullin A. 2017 http://dspace.kpfu.ru/xmlui/handle/net/129994 unknown International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM 62 17 931 http://dspace.kpfu.ru/xmlui/bitstream/net/129994/-1/SCOPUS13142704-2017-17-62-SID85032393390-a1.pdf 1314-2704 http://dspace.kpfu.ru/xmlui/handle/net/129994 SCOPUS13142704-2017-17-62-SID85032393390 Lunar internal structure Lunar laser ranging Selenodesy Space astronomy Space missions Conference Paper 2017 ftkazanuniv 2022-01-01T09:44:22Z © SGEM2017 All Rights Reserved. Numerous space agencies and powers have announced their plans on lunar exploration for the next years. The main purposes are preparation and creation of long-term scientific, technological, experimental, and industrial bases on the near side of the Moon and in the areas of the lunar poles for conducting scientific experiments and investigating lunar bowels. The American space agency (NASA) has published the most detailed for today map of the lunar South Pole. The new data has been collected by the “Lunar Reconnaissance Orbiter” (LRO) spacecraft which is currently travelling around the Earth’s artificial satellite’s polar orbit (i.e. orbit with 900 inclination). The spacecraft is moving 45 km above the lunar surface which is lower than in any of previous missions. This fact alongside with the high-quality equipment has allowed “LRO” to obtain the most detailed map of the polar area. Particularly, the spacecraft has managed to find traces of hydrogen in the South Pole craters. In the present work we are discussing geophysical parameters, geometric and dynamic compression of the liquid core and elastic mantle of the multi-layer Moon. The lunar internal structure, including the lunar liquid core, is considered; an analytical solution of Clairaut’s equation for determining geometrical compression of the two-layer Moon model is obtained; mathematical and bifurcation analyses of the solution for the problem’s physical parameters are conducted; the software for computer simulating of different radiuses, densities, and values of geometrical compression is developed. These estimates are necessary for free librations of the lunar layers investigations and for the development of lunar laser ranging and radio interferometry in the international cooperation of space powers in the fields of both observations and processing and interpretation of observational data. Such investigations require development of adequate theoretical provision for modern technologies. In the present work relativistic effects of the Earth-Moon system rotation and the latest achievements in geophysics and selenophysics are taken into account. Conference Object South pole Kazan Federal University Digital Repository South Pole
institution Open Polar
collection Kazan Federal University Digital Repository
op_collection_id ftkazanuniv
language unknown
topic Lunar internal structure
Lunar laser ranging
Selenodesy
Space astronomy
Space missions
spellingShingle Lunar internal structure
Lunar laser ranging
Selenodesy
Space astronomy
Space missions
Andreev A.
Nefedyev Y.
Demina N.
Petrova N.
Zagidullin A.
Multi-parametric analysis of the lunar internal structure based on space data
topic_facet Lunar internal structure
Lunar laser ranging
Selenodesy
Space astronomy
Space missions
description © SGEM2017 All Rights Reserved. Numerous space agencies and powers have announced their plans on lunar exploration for the next years. The main purposes are preparation and creation of long-term scientific, technological, experimental, and industrial bases on the near side of the Moon and in the areas of the lunar poles for conducting scientific experiments and investigating lunar bowels. The American space agency (NASA) has published the most detailed for today map of the lunar South Pole. The new data has been collected by the “Lunar Reconnaissance Orbiter” (LRO) spacecraft which is currently travelling around the Earth’s artificial satellite’s polar orbit (i.e. orbit with 900 inclination). The spacecraft is moving 45 km above the lunar surface which is lower than in any of previous missions. This fact alongside with the high-quality equipment has allowed “LRO” to obtain the most detailed map of the polar area. Particularly, the spacecraft has managed to find traces of hydrogen in the South Pole craters. In the present work we are discussing geophysical parameters, geometric and dynamic compression of the liquid core and elastic mantle of the multi-layer Moon. The lunar internal structure, including the lunar liquid core, is considered; an analytical solution of Clairaut’s equation for determining geometrical compression of the two-layer Moon model is obtained; mathematical and bifurcation analyses of the solution for the problem’s physical parameters are conducted; the software for computer simulating of different radiuses, densities, and values of geometrical compression is developed. These estimates are necessary for free librations of the lunar layers investigations and for the development of lunar laser ranging and radio interferometry in the international cooperation of space powers in the fields of both observations and processing and interpretation of observational data. Such investigations require development of adequate theoretical provision for modern technologies. In the present work relativistic effects of the Earth-Moon system rotation and the latest achievements in geophysics and selenophysics are taken into account.
format Conference Object
author Andreev A.
Nefedyev Y.
Demina N.
Petrova N.
Zagidullin A.
author_facet Andreev A.
Nefedyev Y.
Demina N.
Petrova N.
Zagidullin A.
author_sort Andreev A.
title Multi-parametric analysis of the lunar internal structure based on space data
title_short Multi-parametric analysis of the lunar internal structure based on space data
title_full Multi-parametric analysis of the lunar internal structure based on space data
title_fullStr Multi-parametric analysis of the lunar internal structure based on space data
title_full_unstemmed Multi-parametric analysis of the lunar internal structure based on space data
title_sort multi-parametric analysis of the lunar internal structure based on space data
publishDate 2017
url http://dspace.kpfu.ru/xmlui/handle/net/129994
geographic South Pole
geographic_facet South Pole
genre South pole
genre_facet South pole
op_source SCOPUS13142704-2017-17-62-SID85032393390
op_relation International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM
62
17
931
http://dspace.kpfu.ru/xmlui/bitstream/net/129994/-1/SCOPUS13142704-2017-17-62-SID85032393390-a1.pdf
1314-2704
http://dspace.kpfu.ru/xmlui/handle/net/129994
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