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Prikladnaya Mekhanika i Tekhnicheskaya Fizika, 2017, Volume 58, Issue 6, Pages 149–157
DOI: https://doi.org/10.15372/PMTF20170614
(Mi pmtf647)
 

This article is cited in 17 scientific papers (total in 17 papers)

Temperature distribution in the spherical shell of a gauge-adjusting satellite

V. S. Zarubin, V. N. Zimin, G. N. Kuvyrkin

Bauman Moscow State Technical University, Moscow, 105005, Russia
Abstract: A thermal model of the aluminized polymer shell of a gauge-adjusting satellite for calculating the steady-state temperature distribution of this shell at its fixed orientation relative to the Sun. A modified version of the model was used to analyze the quasistationary distribution of the shell temperature in the case of its rotation with a constant angular velocity about an axis perpendicular the direction to the Sun.
Keywords: satellite, spherical shell, equilibrium temperature, quasistationary temperature distribution.
Funding agency Grant number
Ministry of Science and Higher Education of the Russian Federation 9.7784.2017/БЧ
9.2422.2017/ПЧ
Received: 15.04.2016
Revised: 22.09.2016
English version:
Journal of Applied Mechanics and Technical Physics, 2017, Volume 58, Issue 6, Pages 1083–1090
DOI: https://doi.org/10.1134/S0021894417060141
Bibliographic databases:
Document Type: Article
UDC: 536.2
Language: Russian
Citation: V. S. Zarubin, V. N. Zimin, G. N. Kuvyrkin, “Temperature distribution in the spherical shell of a gauge-adjusting satellite”, Prikl. Mekh. Tekh. Fiz., 58:6 (2017), 149–157; J. Appl. Mech. Tech. Phys., 58:6 (2017), 1083–1090
Citation in format AMSBIB
\Bibitem{ZarZimKuv17}
\by V.~S.~Zarubin, V.~N.~Zimin, G.~N.~Kuvyrkin
\paper Temperature distribution in the spherical shell of a gauge-adjusting satellite
\jour Prikl. Mekh. Tekh. Fiz.
\yr 2017
\vol 58
\issue 6
\pages 149--157
\mathnet{http://mi.mathnet.ru/pmtf647}
\crossref{https://doi.org/10.15372/PMTF20170614}
\elib{https://elibrary.ru/item.asp?id=30676169}
\transl
\jour J. Appl. Mech. Tech. Phys.
\yr 2017
\vol 58
\issue 6
\pages 1083--1090
\crossref{https://doi.org/10.1134/S0021894417060141}
Linking options:
  • https://www.mathnet.ru/eng/pmtf647
  • https://www.mathnet.ru/eng/pmtf/v58/i6/p149
  • This publication is cited in the following 17 articles:
    1. Soufiane Benounas, Mohamed-Ouejdi Belarbi, Vinh Pham Van, Ahmed Amine Daikh, “Precise analysis of the static bending response of functionally graded doubly curved shallow shells via an improved finite element shear model”, Engineering Structures, 319 (2024), 118829  crossref
    2. Vsevolod V. Koryanov, Mechanisms and Machine Science, 121, Advances in Automation, Mechanical and Design Engineering, 2023, 1  crossref
    3. S.V. Reznik, E.N. Abramova, “Key issues of creating the inflatable braking devices for removal of the failed satellites into the atmosphere dense layers Part 2. Analysis of the thermal regime under the combined heating conditions”, PoHEI.MB, 2023, no. 6 (759), 119  crossref
    4. E.N. Abramova, “Temperature state of the housing and shell for an inflatable aerodynamic decelerator”, IOP Conf. Ser.: Mater. Sci. Eng., 1060:1 (2021), 012015  crossref
    5. Vsevolod V. Koryanov, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2318, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2021, 110011  crossref
    6. E. N. Abramova, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2318, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2021, 020020  crossref
    7. E N Abramova, S V Reznik, “The heat transfer features of the thin-walled shell of an inflatable aerodynamic decelerator for CubeSat nanosatellites”, IOP Conf. Ser.: Mater. Sci. Eng., 709:4 (2020), 044108  crossref
    8. B. M. Pahomov, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 120008  crossref
    9. V. V. Leonov, V. S. Zarubin, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 030004  crossref
    10. S. Lupin, M. Nestiurkina, M. Puschin, M. Skvortsova, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 060005  crossref
    11. Vsevolod V. Koryanov, Victor P. Kazakovtsev, Alexey G. Toporkov, Anton A. Nedogarok, 2019 IEEE 10th International Conference on Mechanical and Aerospace Engineering (ICMAE), 2019, 32  crossref
    12. N. I. Sidnyaev, E. V. Belkina, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 170004  crossref
    13. V. Igritsky, V. Mayorova, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 140007  crossref
    14. Vsevolod V. Koryanov, Alexey G. Toporkov, Victor P. Kazakovtsev, Anton A. Nedogarok, “Study of the Possibility of Using the Mechanics of Inflatable Braking Devices to Remove the Spacecraft”, J. Phys.: Conf. Ser., 1215:1 (2019), 012031  crossref
    15. Vsevolod V. Koryanov, Victor P. Kazakovtsev, Helene Griselin, Chen Danhe, “Analysis of the dynamics of movement landing vehicle with an inflatable braking device on final stage of trajectory”, IOP Conf. Ser.: Mater. Sci. Eng., 630:1 (2019), 012005  crossref
    16. Vsevolod V. Koryanov, Sun Huanyu, “Analysis of emerging disturbing factors on the descent vehicle with inflatable mechanical devices during the descent stage”, IOP Conf. Ser.: Mater. Sci. Eng., 630:1 (2019), 012031  crossref
    17. V V Koryanov, A G Toporkov, V P Kazakovtsev, A A Nedogarok, E K Gnezdova, “The use of inflatable structures for the removal of spacecraft from orbit”, IOP Conf. Ser.: Mater. Sci. Eng., 683:1 (2019), 012069  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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