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Essential Spaceflight Dynamics and Magnetospherics

'Space Technology Library'. Auflage 2003. Book. Sprac…
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Titel: Essential Spaceflight Dynamics and Magnetospherics
Autor/en: Susan M. P. McKenna-Lawlor, M. Y. Ovchinnikov, V. Rauschenbakh

ISBN: 140201063X
EAN: 9781402010637
'Space Technology Library'.
Auflage 2003.
Book.
Sprache: Englisch.
Springer Netherlands

31. Dezember 2002 - gebunden - 420 Seiten

Essential Spaceflight Dynamics and Magnetospherics describes, in the first instance, some of the key aspects of celestial mechanics and spaceflight dynamics. It begins with classical two and three body problems illustrative of the aesthetic aspects of applying analytical methods of investigation to celestial mechanics. Then, osculating orbital elements are introduced as well as analysis techniques sufficient to evaluate the influence of various disturbing forces on spacecraft. Next a theory of manoeuvres is outlined and the methodology of making interplanetary trajectory corrections. Ideas involving various approaches to orbital element determinations using measured data are also considered. The forces applied to a spacecraft can result in the development of torques that influence attitude motion and the effects of the most important of these are described in terms of equilibrium positions, periodic motions, steady-state and transient motions. Also considered is the problem of attitude control of a spacecraft using active and/or passive methods of orientation and stabilization. In addition, a more advanced treatment of the development of attitude control systems is provided. The present book Essential Spaceflight Dynamics and Magnetospherics describes, in the first instance, some of the key aspects of celestial mechanics and spaceflight dynamics. It begins with classical two and three body problems illustrative of the aesthetic aspects of applying analytical methods of investigation to celestial mechanics. Then, osculating orbital elements are introduced as well as analysis techniques sufficient to evaluate the influence of various disturbing forces on spacecraft. Next a theory of manoeuvres is outlined and the methodology of making interplanetary trajectory corrections. Ideas involving various approaches to orbital element determinations using measured data are also considered. The forces applied to a spacecraft can result in the development of torques that influence attitude motion and the effects of the most important of these are described in terms of equilibrium positions, periodic motions, steady-state and transient motions. Also considered is the problem of attitude control of a spacecraft using active and/or passive methods of orientation and stabilization. In addition, a more advanced treatment of the development of attitude control systems is provided. A description of the Earth's magnetic and gravitational fields allows clarification of the relationship between natural features of the Earth's environment and the requirements of mission design, orbit construction and approaches to attitude control. A detailed Addendum provides an overview of circumstances on the Sun that render interplanetary space a very hazardous environment for spacecraft and for `man in space'. The influence of this environment on spacecraft performance and survival is then presented, together with an outline of some of the mitigating strategies that can be invoked. A feature of the Addendum is the indication it provides of the challenges that the next generation of space experiments will pose to mission designers. It is accompanied by a separate set of references since if refers to ongoing work in space physics rather than to classical material.
Preface. About the Authors. 1. Two-Body Problem. 2. Qualitative Analysis of Orbits. 3. Perturbed Motion. 4. Gravispheres. 5. Osculating Elements. 6. Braking in the Earth's Atmosphere. 7. Terrestial Nonsphericity. 8. SC in the Field of Two Centers. 9. Elements of Manoeuvring Theory. 10. Trajectory Corrections. 11. Rendezvous Manoeuvring. 12. Gravity-Assist Manoeuvre. 13. About Orbit determination. 14. Introduction to Attitude Control. 15. Gravity-Gradient Torque Effect. 16. SC Motion in a Circular Orbit. 17. SC Motion in an Elliptical Orbit. 18. Spinning Axisymmetric SC. 19. Equilibrium of a Gyrostat. 20. Effect of Aerodynamic Torque. 21. SC in the Geomagnetic Field. 22. Motion of a SC Under Damping. Appendices: A: Method of van der Pol. B: Periodic Equations. C: Poincare's Method. Bibliography. Addendum: The Space Environment. A.1. Solar Activity and Near Earth Space. A.2. The Environment and SC performance. A.3. Overview of In-Orbit Disturbances. A.4. Beyond the Solar System. List of References for the Addendum. Index of Scientists Cited in Footnotes. List of Figures. List of Tables.
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