Published December 2015 | Version v1
Journal article

Asymptotic Behavior of an Elastic Satellite with Internal Friction

  • 1. Università di Napoli Federico II Via Cintia, Dipartimento di Matematica e Applicazioni R. Caccioppoli (Italy)
  • 2. Università degli Studi di Milano, DIpartimento di Matematica F. Enriques (Italy)

Description

We study the dynamics of an elastic body whose shape and position evolve due to the gravitational forces exerted by a pointlike planet. The main result is that, if all the deformations of the satellite dissipate some energy, then under a suitable nondegeneracy condition there are only three possible outcomes for the dynamics: (i) the orbit of the satellite is unbounded, (ii) the satellite falls on the planet, (iii) the satellite is captured in synchronous resonance i.e. its orbit is asymptotic to a motion in which the barycenter moves on a circular orbit, and the satellite moves rigidly, always showing the same face to the planet. The result is obtained by making use of LaSalle's invariance principle and by a careful kinematic analysis showing that energy stops dissipating only on synchronous orbits. We also use in quite an extensive way the fact that conservative elastodynamics is a Hamiltonian system invariant under the action of the rotation group

Additional details

Identifiers

Publishing Information

Journal Title
Mathematical Physics, Analysis and Geometry
Journal Volume
18
Journal Issue
1
Journal Page Range
p. 1-18
ISSN
1385-0172

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
47037054
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
ASYMPTOTIC SOLUTIONS; CALCULATION METHODS; DEFORMATION; HAMILTONIANS; INTERNAL FRICTION; INVARIANCE PRINCIPLES; ORBITS; PLANETS; RESONANCE; ROTATION; SATELLITES
Descriptors DEC
FRICTION; MATHEMATICAL OPERATORS; MATHEMATICAL SOLUTIONS; MOTION; QUANTUM OPERATORS

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Copyright
Copyright (c) 2015 Springer Science+Business Media Dordrecht