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IssuesArchive of Issues2019-2pp.179-189

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N.I. Amel'kin and V.V. Kholoshchak, "Evolution of the Rotational Movement of a Dynamically Symmetric Satellite with Inner Damping in a Circular Orbit," Mech. Solids. 54 (2), 179-189 (2019)
Year 2019 Volume 54 Number 2 Pages 179-189
DOI 10.3103/S0025654419030014
Title Evolution of the Rotational Movement of a Dynamically Symmetric Satellite with Inner Damping in a Circular Orbit
Author(s) N.I. Amel'kin (Moscow Institute of Physics and Technology, Dolgoprudny, 141701 Russia, namelkin@mail.ru)
V.V. Kholoshchak (Moscow Institute of Physics and Technology, Dolgoprudny, 141701 Russia, khoviktoriya@yandex.ru)
Abstract In this paper, we studied the effect of internal dissipation on the rotational motion of a satellite in a central gravitational field using the Lavrent’ev model. Evolution equations are derived, and the results of an evolution analysis of the rotational motion of a dynamically symmetric satellite moving in a Keplerian circular orbit depending on the parameter values and initial conditions are presented.
Keywords satellite, central field, circular orbit, stationary rotations, stability, evolution of rotational motion
Received 20 April 2018Revised 20 April 2018Accepted 20 April 2018
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