Dynamics of extended celestial bodies and rings:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg ; New York
Springer
2006
|
Schriftenreihe: | Lecture notes in physics
682 |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XII, 207 S. Ill., graph. Darst. 24 cm |
ISBN: | 9783540280248 3540280243 |
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Datensatz im Suchindex
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adam_text | JEAN SOUCHAY (ED.) DYNAMICS OF EXTENDED CELESTIAL BODIES AND RINGS A
J SPRINGER CONTENTS SPINNING BODIES: A TUTORIAL TADASHI TOKIEDA 1 1
INTRODUCTION 1 2 INERTIA MATRIX 3 3 CONSERVATION LAWS 6 4 MISCELLANEOUS
EXAMPLES 7 5 EULER S EQUATIONS 11 6 SPINNING UNDER NO TORQUE: EULER S
TOP 12 7 SOME CASES OF SPINNING UNDER TORQUES: LAGRANGE S TOP 16 8
KOVALEVSKAYA S TOP 19 9 APPENDIX 20 10 FURTHER READING AND
ACKNOWLEDGEMENT 21 REFERENCES 21 PHYSICS INSIDE THE EARTH: DEFORMATION
AND ROTATION HILAIRE LEGROS, MARIANNE GREFF, TADASHI TOKIEDA 23 1
INTRODUCTION 23 2 TERRESTRIAL MECHANICS AND SURVEY OF SOME DYNAMICAL
THEORIES 23 2.1 HISTORICAL REVIEW 23 2.2 PHYSICAL AND MECHANICAL SETUP
24 2.3 CLASSICAL THEORIES 26 3 DEFORMATION OF A PLANET . 29 3.1
HISTORICAL REVIEW 30 3.2 ELASTO-GRAVITATIONAL DEFORMATION OF A PLANET 31
3.3 VISCOELASTIC DEFORMATION OF A PLANET 39 3.4 PERSPECTIVES 46 4
ROTATION OF A DEFORMABLE STRATIFIED PLANET 49 4.1 HISTORICAL REVIEW 49
4.2 ROTATION WITH A FLUID CORE AND A SOLID INNER CORE 50 VIII CONTENTS
4.3 DISCUSSION 60 4.4 CONCLUSION 62 REFERENCES 62 MODELLING AND
CHARACTERIZING THE EARTH S GRAVITY FIELD: FROM BASIC PRINCIPLES TO
CURRENT PURPOSES FLORENT DELEFLIE, PIERRE EXERTIER 67 1 INTRODUCTION 67
2 BASIC PRINCIPLES 68 2.1 MASS AND GRAVITATION 68 2.2 POTENTIAL
GENERATED BY A CONTINUOUS BODY 70 2.3 POTENTIAL GENERATED BY A
CONTINUOUS BODY IN ROTATION 71 3 COEFFICIENTS CHARACTERIZING THE GRAVITY
FIELD 72 3.1 LEGENDRE POLYNOMIALS 72 3.2 SPHERICAL HARMONICS 73 3.3
DEVELOPMENT OF THE GRAVITY FIELD IN SPHERICAL HARMONICS 73 4 GLOBAL
GEODYNAMICS 75 5 ORBITAL DYNAMICS 77 5.1 INTEGRATE THE EQUATIONS OF
MOTION 77 5.2 COMPUTING FROM SPACE THE COEFFICIENTS OF THE GRAVITY FIELD
... 79 6 CURRENT PURPOSES 81 6.1 COMBINED GRAVITY FIELD MODELS 81 6.2
THE NEW MISSIONS GRACE AND GOCE 83 6.3 TOWARDS AN ALTERNATIVE TO
SPHERICAL HARMONICS FOR SHORT SPATIAL WAVELENGTHS 84 7 CONCLUSION 85
REFERENCES 86 ASTEROIDS FROM OBSERVATIONS TO MODELS D. HESTROFFER, P.
TANGA 89 1 INTRODUCTION 89 2 LIGHTCURVES 89 3 ROTATION 90 4 FIGURES OF
EQUILIBRIUM 95 4.1 HYDROSTATIC EQUILIBRIUM 96 4.2 ELASTOSTATIC
EQUILIBRIUM AND ELASTIC-PLASTIC THEORIES 101 4.3 BINARY SYSTEMS AND THE
DENSITY PROFILE 103 5 THE DETERMINATION OF SHAPE AND SPIN PARAMETERS BY
HUBBLE SPACE TELESCOPE 105 5.1 THE FGS INTERFEROMETER 105 5.2 FROM DATA
TO MODELING 107 5.3 SOME SIGNIFICANT EXAMPLES 109 6 CONCLUSIONS 113
REFERENCES 114 CONTENTS IX MODELLING COLLISIONS BETWEEN ASTEROIDS: FROM
LABORATORY EXPERIMENTS TO NUMERICAL SIMULATIONS PATRICK MICHEL 117 1
INTRODUCTION - 118 2 LABORATORY EXPERIMENTS 120 2.1 DEGREE OF
FRAGMENTATION 121 2.2 FRAGMENT SIZE DISTRIBUTION 122 2.3 FRAGMENT
VELOCITY DISTRIBUTION 122 3 FRAGMENTATION PHASE: THEORETICAL BASIS 123
3.1 BASIC EQUATIONS 124 3.2 FUNDAMENTAL BASIS OF DYNAMICAL FRACTURE 125
3.3 NUMERICALLY SIMULATING THE FRAGMENTATION PHASE 130 3.4 SUMMARY OF
LIMITATIONS DUE TO MATERIAL UNCERTAINTIES 131 4 GRAVITATIONAL PHASE:
LARGE-SCALE SIMULATIONS 131 5 CURRENT UNDERSTANDING AND LATEST RESULTS
133 5.1 DISRUPTION OF MONOLITHIC FAMILY PARENT BODIES 134 5.2 DISRUPTION
OF PRE-SHATTERED PARENT BODIES 136 6 CONCLUSIONS 140 REFERENCES 141
GEOMETRIC CONDITIONS FOR QUASI-COLLISIONS IN OPIK S THEORY GIOVANNI B.
VALSECCHI 145 1 INTRODUCTION 145 2 THE GEOMETRY OF PLANETARY CLOSE
ENCOUNTERS 146 3 A GENERALIZED SETUP FOR OPIK S THEORY 149 3.1 FROM
HELIOCENTRIC ELEMENTS OF THE SMALL BODY TO CARTESIAN GEOCENTRIC POSITION
AND VELOCITY AND BACK 149 3.2 THE LOCAL MOID 151; 3.3 THE COORDINATES ON
THE 6-PLANE 153 3.4 THE ENCOUNTER 154 3.5 POST-ENCOUNTER COORDINATES
IN THE POST-ENCOUNTER 6-PLANE AND THE NEW LOCAL MOID 155 3.6
POST-ENCOUNTER PROPAGATION 156 4 DISCUSSION 157 REFERENCES 158 THE
SYNCHRONOUS ROTATION OF THE MOON JACQUES HENRARD 159 1 INTRODUCTION 159
2 ANDOYER S VARIABLES 160 3 PERTURBATION BY ANOTHER BODY 161 4 CASSINI S
STATES 163 5 MOTION AROUND THE CASSINI S STATES 165 REFERENCES 167 X
CONTENTS SPIN-ORBIT RESONANT ROTATION OF MERCURY SANDRINE D HOEDT, ANNE
LEMAITRE 169 1 INTRODUCTION 169 2 REFERENCE FRAMES AND VARIABLES CHOICE
171 3 FIRST MODEL OF ROTATION 173 4 DEVELOPMENT OF THE GRAVITATIONAL
POTENTIAL 174 5 SPIN-ORBIT RESONANT ANGLE 175 6 SIMPLIFIED HAMILTONIAN
AND BASIC FREQUENCIES 177 7 CONCLUSION 180 REFERENCES 180 DYNAMICS OF
PLANETARY RINGS BRUNO SICARDY : 183 1 INTRODUCTION 183 2 PLANETARY RINGS
AND THE ROCHE ZONE 184 3 FLATTENING OF RINGS 185 4 STABILITY OF FLAT
DISKS 186 5 PARTICLE SIZE AND RING THICKNESS 190 6 RESONANCES IN
PLANETARY RINGS 192 7 WAVES AS PROBES OF THE RINGS 198 8 TORQUE AT
RESONANCES .* 198 9 CONCLUDING REMARKS 200 REFERENCES 200 INDEX 201
|
adam_txt |
JEAN SOUCHAY (ED.) DYNAMICS OF EXTENDED CELESTIAL BODIES AND RINGS A \
J SPRINGER CONTENTS SPINNING BODIES: A TUTORIAL TADASHI TOKIEDA 1 1
INTRODUCTION 1 2 INERTIA MATRIX 3 3 CONSERVATION LAWS 6 4 MISCELLANEOUS
EXAMPLES 7 5 EULER'S EQUATIONS 11 6 SPINNING UNDER NO TORQUE: EULER'S
TOP 12 7 SOME CASES OF SPINNING UNDER TORQUES: LAGRANGE'S TOP 16 8
KOVALEVSKAYA'S TOP 19 9 APPENDIX 20 10 FURTHER READING AND
ACKNOWLEDGEMENT 21 REFERENCES 21 PHYSICS INSIDE THE EARTH: DEFORMATION
AND ROTATION HILAIRE LEGROS, MARIANNE GREFF, TADASHI 'TOKIEDA 23 1
INTRODUCTION 23 2 TERRESTRIAL MECHANICS AND SURVEY OF SOME DYNAMICAL
THEORIES 23 2.1 HISTORICAL REVIEW 23 2.2 PHYSICAL AND MECHANICAL SETUP
24 2.3 CLASSICAL THEORIES 26 3 DEFORMATION OF A PLANET . 29 3.1
HISTORICAL REVIEW 30 3.2 ELASTO-GRAVITATIONAL DEFORMATION OF A PLANET 31
3.3 VISCOELASTIC DEFORMATION OF A PLANET 39 3.4 PERSPECTIVES 46 4
ROTATION OF A DEFORMABLE STRATIFIED PLANET 49 4.1 HISTORICAL REVIEW 49
4.2 ROTATION WITH A FLUID CORE AND A SOLID INNER CORE 50 VIII CONTENTS
4.3 DISCUSSION 60 4.4 CONCLUSION 62 REFERENCES 62 MODELLING AND
CHARACTERIZING THE EARTH'S GRAVITY FIELD: FROM BASIC PRINCIPLES TO
CURRENT PURPOSES FLORENT DELEFLIE, PIERRE EXERTIER 67 1 INTRODUCTION 67
2 BASIC PRINCIPLES 68 2.1 MASS AND GRAVITATION 68 2.2 POTENTIAL
GENERATED BY A CONTINUOUS BODY 70 2.3 POTENTIAL GENERATED BY A
CONTINUOUS BODY IN ROTATION 71 3 COEFFICIENTS CHARACTERIZING THE GRAVITY
FIELD 72 3.1 LEGENDRE POLYNOMIALS 72 3.2 SPHERICAL HARMONICS 73 3.3
DEVELOPMENT OF THE GRAVITY FIELD IN SPHERICAL HARMONICS 73 4 GLOBAL
GEODYNAMICS 75 5 ORBITAL DYNAMICS 77 5.1 INTEGRATE THE EQUATIONS OF
MOTION 77 5.2 COMPUTING FROM SPACE THE COEFFICIENTS OF THE GRAVITY FIELD
. 79 6 CURRENT PURPOSES 81 6.1 COMBINED GRAVITY FIELD MODELS 81 6.2
THE NEW MISSIONS GRACE AND GOCE 83 6.3 TOWARDS AN ALTERNATIVE TO
SPHERICAL HARMONICS FOR SHORT SPATIAL WAVELENGTHS 84 7 CONCLUSION 85
REFERENCES 86 ASTEROIDS FROM OBSERVATIONS TO MODELS D. HESTROFFER, P.
TANGA 89 1 INTRODUCTION 89 2 LIGHTCURVES 89 3 ROTATION 90 4 FIGURES OF
EQUILIBRIUM 95 4.1 HYDROSTATIC EQUILIBRIUM 96 4.2 ELASTOSTATIC
EQUILIBRIUM AND ELASTIC-PLASTIC THEORIES 101 4.3 BINARY SYSTEMS AND THE
DENSITY PROFILE 103 5 THE DETERMINATION OF SHAPE AND SPIN PARAMETERS BY
HUBBLE SPACE TELESCOPE 105 5.1 THE FGS INTERFEROMETER 105 5.2 FROM DATA
TO MODELING 107 5.3 SOME SIGNIFICANT EXAMPLES 109 6 CONCLUSIONS 113
REFERENCES 114 CONTENTS IX MODELLING COLLISIONS BETWEEN ASTEROIDS: FROM
LABORATORY EXPERIMENTS TO NUMERICAL SIMULATIONS PATRICK MICHEL 117 1
INTRODUCTION - 118 2 LABORATORY EXPERIMENTS 120 2.1 DEGREE OF
FRAGMENTATION 121 2.2 FRAGMENT SIZE DISTRIBUTION 122 2.3 FRAGMENT
VELOCITY DISTRIBUTION 122 3 FRAGMENTATION PHASE: THEORETICAL BASIS 123
3.1 BASIC EQUATIONS 124 3.2 FUNDAMENTAL BASIS OF DYNAMICAL FRACTURE 125
3.3 NUMERICALLY SIMULATING THE FRAGMENTATION PHASE 130 3.4 SUMMARY OF
LIMITATIONS DUE TO MATERIAL UNCERTAINTIES 131 4 GRAVITATIONAL PHASE:
LARGE-SCALE SIMULATIONS 131 5 CURRENT UNDERSTANDING AND LATEST RESULTS
133 5.1 DISRUPTION OF MONOLITHIC FAMILY PARENT BODIES 134 5.2 DISRUPTION
OF PRE-SHATTERED PARENT BODIES 136 6 CONCLUSIONS 140 REFERENCES 141
GEOMETRIC CONDITIONS FOR QUASI-COLLISIONS IN OPIK'S THEORY GIOVANNI B.
VALSECCHI 145 1 INTRODUCTION 145 2 THE GEOMETRY OF PLANETARY CLOSE
ENCOUNTERS 146 3 A GENERALIZED SETUP FOR OPIK'S THEORY 149 3.1 FROM
HELIOCENTRIC ELEMENTS OF THE SMALL BODY TO CARTESIAN GEOCENTRIC POSITION
AND VELOCITY AND BACK 149 3.2 THE LOCAL MOID 151; 3.3 THE COORDINATES ON
THE 6-PLANE 153' 3.4 THE ENCOUNTER \ 154 3.5 POST-ENCOUNTER COORDINATES
IN THE POST-ENCOUNTER 6-PLANE AND THE NEW LOCAL MOID 155 3.6
POST-ENCOUNTER PROPAGATION 156 4 DISCUSSION 157 REFERENCES 158 THE
SYNCHRONOUS ROTATION OF THE MOON JACQUES HENRARD 159 1 INTRODUCTION 159
2 ANDOYER'S VARIABLES 160 3 PERTURBATION BY ANOTHER BODY 161 4 CASSINI'S
STATES 163 5 MOTION AROUND THE CASSINI'S STATES 165 REFERENCES 167 X
CONTENTS SPIN-ORBIT RESONANT ROTATION OF MERCURY SANDRINE D'HOEDT, ANNE
LEMAITRE 169 1 INTRODUCTION 169 2 REFERENCE FRAMES AND VARIABLES CHOICE
171 3 FIRST MODEL OF ROTATION 173 4 DEVELOPMENT OF THE GRAVITATIONAL
POTENTIAL 174 5 SPIN-ORBIT RESONANT ANGLE 175 6 SIMPLIFIED HAMILTONIAN
AND BASIC FREQUENCIES 177 7 CONCLUSION 180 REFERENCES 180 DYNAMICS OF
PLANETARY RINGS BRUNO SICARDY : 183 1 INTRODUCTION 183 2 PLANETARY RINGS
AND THE ROCHE ZONE 184 3 FLATTENING OF RINGS 185 4 STABILITY OF FLAT
DISKS 186 5 PARTICLE SIZE AND RING THICKNESS 190 6 RESONANCES IN
PLANETARY RINGS 192 7 WAVES AS PROBES OF THE RINGS 198 8 TORQUE AT
RESONANCES .* 198 9 CONCLUDING REMARKS 200 REFERENCES 200 INDEX 201 |
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index_date | 2024-07-02T14:47:03Z |
indexdate | 2024-07-09T20:39:35Z |
institution | BVB |
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physical | XII, 207 S. Ill., graph. Darst. 24 cm |
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series | Lecture notes in physics |
series2 | Lecture notes in physics |
spelling | Dynamics of extended celestial bodies and rings Jean Souchay (ed.) Berlin ; Heidelberg ; New York Springer 2006 XII, 207 S. Ill., graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier Lecture notes in physics 682 Literaturangaben Mécanique céleste Celestial mechanics Himmelsmechanik (DE-588)4127484-2 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 2003 Lanslevillard gnd-content Himmelsmechanik (DE-588)4127484-2 s DE-604 Souchay, Jean Sonstige oth Lecture notes in physics 682 (DE-604)BV000003166 682 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=2671215&prov=M&dok_var=1&dok_ext=htm Inhaltstext GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014814552&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Dynamics of extended celestial bodies and rings Lecture notes in physics Mécanique céleste Celestial mechanics Himmelsmechanik (DE-588)4127484-2 gnd |
subject_GND | (DE-588)4127484-2 (DE-588)1071861417 |
title | Dynamics of extended celestial bodies and rings |
title_auth | Dynamics of extended celestial bodies and rings |
title_exact_search | Dynamics of extended celestial bodies and rings |
title_exact_search_txtP | Dynamics of extended celestial bodies and rings |
title_full | Dynamics of extended celestial bodies and rings Jean Souchay (ed.) |
title_fullStr | Dynamics of extended celestial bodies and rings Jean Souchay (ed.) |
title_full_unstemmed | Dynamics of extended celestial bodies and rings Jean Souchay (ed.) |
title_short | Dynamics of extended celestial bodies and rings |
title_sort | dynamics of extended celestial bodies and rings |
topic | Mécanique céleste Celestial mechanics Himmelsmechanik (DE-588)4127484-2 gnd |
topic_facet | Mécanique céleste Celestial mechanics Himmelsmechanik Konferenzschrift 2003 Lanslevillard |
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volume_link | (DE-604)BV000003166 |
work_keys_str_mv | AT souchayjean dynamicsofextendedcelestialbodiesandrings |