Astronautics: the physics of space flight
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2012
|
Ausgabe: | 2., enl. and improved ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXVIII, 568 S. Ill., graph. Darst. 25 cm |
ISBN: | 9783527410651 9783527410354 |
Internformat
MARC
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020 | |a 9783527410354 |c softcover |9 978-3-527-41035-4 | ||
035 | |a (OCoLC)725142174 | ||
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245 | 1 | 0 | |a Astronautics |b the physics of space flight |c Ulrich Walter |
250 | |a 2., enl. and improved ed. | ||
264 | 1 | |a Weinheim |b Wiley-VCH |c 2012 | |
300 | |a XXVIII, 568 S. |b Ill., graph. Darst. |c 25 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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655 | 7 | |0 (DE-588)4123623-3 |a Lehrbuch |2 gnd-content | |
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943 | 1 | |a oai:aleph.bib-bvb.de:BVB01-022628362 |
Datensatz im Suchindex
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adam_text |
IMAGE 1
V I I
CONTENTS
PREFACE T O SECOND EDITION X V PREFACE X V I I
ACKNOWLEDGMENTS X I X
LIST O F SYMBOLS X X I
1 ROCKET FUNDAMENTALS 1
1.1 ROCKET PRINCIPLES 2
1.1.1 M O M E N T U M T H R U S T 2
1.1.2 EFFECTIVE EXHAUST VELOCITY 4 1.1.3 PRESSURE T H R U S T 5
1.1.4 M O M E N T U M VERSUS PRESSURE T H R U S T 9
1.2 ROCKET EQUATION O F MOTION 12
1.3 RELATIVISTIC ROCKET 13
1.3.1 SPACE FLIGHT DYNAMICS 14
1.3.2 RELATIVISTIC ROCKET EQUATION 16 1.3.3 EXHAUST CONSIDERATIONS 18
1.3.4 EXTERNAL EFFICIENCY 2 0
1.3.5 SPACE-TIME TRANSFORMATIONS 21
2 ROCKET FLIGHT 2 5
2.1 GENERAL CONSIDERATIONS 2 5
2.2 ROCKET I N FREE SPACE 26
2.3 ROCKET I N A GRAVITATIONAL FIELD 2 7
2.3.1 IMPULSIVE MANEUVERS 28
2.3.2 B R I E F T H R U S T 2 9
2.3.3 GRAVITATIONAL LOSS 2 9
2.4 PROPULSION A N D FUEL D E M A N D 3 0
2.4.1 PROPULSION D E M A N D 3 0
2.4.2 FUEL D E M A N D - STAR TREK PLUGGED 3 2
2.5 ROCKET PERFORMANCE 33
2.5.1 ROCKET POWER 3 4
HTTP://D-NB.INFO/1011200589
IMAGE 2
CONTENTS
2.5.2 ROCKET EFFICIENCY 3 4
2.5.3 PAYLOAD CONSIDERATIONS 3 7
3 ROCKET STAGING 41
3.1 SERIAL STAGING 4 2
3.1.1 DEFINITIONS 4 2
3.1.2 ROCKET EQUATION 4 5
3.2 SERIAL-STAGE OPTIMIZATION 4 5
3.2.1 ROAD TO STAGE OPTIMIZATION 4 5
3.2.2 GENERAL OPTIMIZATION 4 6
3.3 ANALYTICAL SOLUTIONS 5 0
3.3.1 U N I F O R M STAGING 51
3.3.2 U N I F O R M EXHAUST VELOCITIES 5 3 3.3.3 U N E V E N STAGING 5 4
3.4 PARALLEL STAGING 5 5
3.5 O T H E R TYPES O F STAGING 5 7
4 THERMAL PROPULSION 59
4.1 ENGINE T H E R M O D Y N A M I C S 60
4.1.1 PHYSICS O F PROPELLANT GASES 6 0
4.1.2 FLOW VELOCITY 6 4
4.1.3 FLOW AT T H E T H R O A T 65
4.1.4 FLOW I N T H E NOZZLE 66
4.2 IDEALLY ADAPTED NOZZLE 71
4.2.1 IDEAL-ADAPTATION CRITERION 71 4.2.2 IDEAL NOZZLE DESIGN 72
4.2.3 IDEAL ENGINE PERFORMANCE 74
4.3 ENGINE T H R U S T 7 5
4.3.1 CHARACTERISTIC T H R U S T COEFFICIENTS 4.3.2 T H R U S T
PERFORMANCE 7 7
4.3.3 NOZZLE EFFICIENCY 8 0
4.4 ENGINE DESIGN 81
4.4.1 C O M B U S T I O N C H A M B E R 8 2
4.4.2 NOZZLE 83
4.4.3 DESIGN GUIDELINES 86
5 ELECTRIC PROPULSION 8 9
5.1 OVERVIEW 8 9
5.2 I O N T H R U S T E R 90
5.2.1 I O N ACCELERATION A N D FLOW 91
5.2.2 ENGINE T H R U S T 94
5.2.3 T H R U S T E R EFFICIENCY 95
5.3 ELECTRIC PROPULSION OPTIMIZATION 9 7
IMAGE 3
CONTENTS I X
6 ASCENT FLIGHT 101
6.1 EARTH'S A T M O S P H E R E 101
6.1.1 DENSITY MASTER EQUATION 101 6.1.2 H O M O S P H E R E (BAROMETRIC
FORMULA) 104 6.1.3 H E T E R O S P H E R E 105
6.1.4 PIECEWISE-EXPONENTIAL MODEL 106 6.2 EQUATIONS O F MOTION 107
6.3 ASCENT PHASES 113
6.4 ASCENT OPTIMIZATION 115
6.4.1 OPTIMIZATION PROBLEM 115
6.4.2 GRAVITY T U R N 118
6.4.3 PITCH M A N E U V E R 120
6.4.4 CONSTANT-PITCH-RATE MANEUVER 120 6.4.5 O P T I M U M - A S C E N T
TRAJECTORY 123
7 ORBITS 125
7.1 EQUATION O F MOTION 125
7.1.1 GRAVITATIONAL POTENTIAL 125 7.1.2 GRAVITATIONAL FIELD 128
7.1.3 CONSERVATION LAWS 129 7.1.4 NEWTON'S LAWS 130
7.1.5 GENERAL TWO-BODY P R O B L E M 133 . 7.2 MOTION PRINCIPLES 136
7.2.1 ANGULAR M O M E N T U M CONSERVATION 136 7.2.2 MOTION I N T H E
ORBITAL PLANE 137
7.2.3 KEPLER'S SECOND LAW 138
7.2.4 ENERGY CONSERVATION 139
7.2.5 EFFECTIVE POTENTIAL 140
7.3 MOTION I N A GRAVITATIONAL FIELD 141
7.3.1 ORBIT EQUATION 141
7.3.2 ORBITAL VELOCITY 144
7.3.3 ORBITAL ENERGY 146
7.3.4 ORBITAL ELEMENTS (KEPLERIAN ELEMENTS) 147 7.3.5 POSITION O N T H E
ORBIT 150
7.4 KEPLERIAN ORBITS 151
7.4.1 CIRCULAR ORBIT 152
7.4.2 PARABOLIC ORBIT 153
7.4.3 ELLIPTIC ORBIT 155
7.4.4 HYPERBOLIC ORBIT 161
7.5 RADIAL ORBITS 164
7.5.1 RADIAL ELLIPTIC ORBIT 166
7.5.2 RADIAL HYPERBOLIC ORBIT 167
7.5.3 RADIAL PARABOLIC ORBIT 168
7.5.4 FREE FALL 169
7.5.5 B O U N D E D VERTICAL MOTION 170
IMAGE 4
X CONTENTS
7.6 LIFE I N O T H E R UNIVERSES? 172
7.6.1 EQUATION O F MOTION I N N D I M E N S I O N S 173
7.6.2 4-DIM UNIVERSE 176
7.6.3 UNIVERSES W I T H D I M 5 177
7.6.4 UNIVERSES WITH D I M 2 179
ORBITAL MANEUVERING 187 8.1 O N E - I M P U L S E MANEUVERS 188
8.1.1 BASIC PRINCIPLES 188
8.1.2 MANEUVERS I N ELLIPTICAL ORBITS 190 8.1.3 MANEUVERS I N CIRCULAR
ORBITS 195
8.2 LAMBERT TRANSFER 196
8.2.1 ORBITAL BOUNDARY VALUE P R O B L E M 197 8.2.2 LAMBERT TRANSFER
ORBITS 200
8.2.3 LAMBERT'S P R O B L E M 204
8.2.4 M I N I M U M EFFORT LAMBERT TRANSFER 206 8.3 H O H M A N N
TRANSFER 2 0 7
8.3.1 T H E M I N I M U M PRINCIPLE 207
8.3.2 TRANSFER B E T W E E N CIRCULAR ORBITS 210 8.3.3 TRANSFER BETWEEN
NEAR-CIRCULAR ORBITS 214 8.3.4 SENSITIVITY ANALYSIS 215 8.4 O T H E R
TRANSFERS 218
8.4.1 BI-ELLIPTIC TRANSFER 218
8.4.2 N-IMPULSE TRANSFERS 220
8.4.3 C O N T I N U O U S T H R U S T TRANSFER 2 2 0
8.5 RELATIVE ORBITS 222
8.5.1 GENERAL EQUATION O F MOTION 2 2 2
8.5.2 HILL'S EQUATIONS 226
8.5.3 FLYAROUND TRAJECTORIES 229 8.6 ORBITAL RENDEZVOUS 234
8.6.1 LAUNCH P H A S E 236
8.6.2 P H A S I N G 240
8.6.3 H O M I N G P H A S E 241
8.6.4 CLOSING PHASE 247
8.6.5 FINAL APPROACH 2 5 0
8.6.6 SHUTTLE-ISS RENDEZVOUS 255 8.6.7 P L U M E I M P I N G E M E N T 2
5 7
INTERPLANETARY FLIGHT 263 9.1 PATCHED CONIES 263
9.1.1 SPHERE O F INFLUENCE 264
9.1.2 PATCHED CONIES 266
9.2 DEPARTURE ORBITS 2 6 7
9.3 TRANSIT ORBITS 2 7 0
9.3.1 H O H M A N N TRANSFERS 270
9.3.2 N O N - H O H M A N N TRANSFERS 273
IMAGE 5
CONTENTS X I
9.4 ARRIVAL ORBIT 279
9.5 FLYBY MANEUVERS 281
9.5.1 OVERVIEW 281
9.5.2 FLYBY FRAMEWORK 282
9.5.3 PLANETOCENTRIC FLYBY ANALYSIS 285 9.5.4 HELIOCENTRIC FLYBY
ANALYSIS 2 9 0
9.5.5 TRANSITION O F ORBITAL ELEMENTS 292
9.6 WEAK STABILITY BOUNDARY TRANSFERS 296
10 RE-ENTRY 301
10.1 INTRODUCTION 301
10.1.1 T H E R M A L CHALLENGES 3 0 2
10.1.2 ENTRY INTERFACE 304
10.1.3 DEORBIT PHASE 305
10.2 EQUATIONS O F MOTION 309
10.2.1 NORMALIZED EQUATIONS O F MOTION 311 10.2.2 REDUCED EQUATIONS O F
MOTION 3 1 5 10.3 ELEMENTARY RESULTS 317
10.3.1 DRAG-FREE PHASE 3 1 7
10.3.2 BALLISTIC RE-ENTRY 319
10.3.3 H E A T FLUX 3 2 2
10.4 RE-ENTRY WITH LIFT 324
10.4.1 LIFT-ONLY CASE 3 2 4
10.4.2 GENERAL RESULTS 326
10.4.3 NEAR-BALLISTIC RE-ENTRY 329 10.5 REFLECTION A N D SKIP RE-ENTRY 3
3 4
10.5.1 REFLECTION 334
10.5.2 SKIP RE-ENTRY 338
10.5.3 PHYGOID M O D E 341
10.6 LIFTING RE-ENTRY 3 4 5
10.6.1 RE-ENTRY TRAJECTORY 347 10.6.2 CRITICAL DECELERATION 348 10.6.3 H
E A T FLUX 349
10.6.4 SPACE SHUTTLE RE-ENTRY 3 5 2
11 THREE-BODY PROBLEM 359 11.1 OVERVIEW 359
11.2 SYNCHRONOUS ORBITS 361
11.2.1 ISOMASS CONFIGURATIONS 361 11.2.2 COLLINEAR CONFIGURATION 361
11.2.3 EQUILATERAL CONFIGURATION 367 11.3 RESTRICTED THREE-BODY P R O B
L E M 369
11.3.1 COLLINEAR LIBRATION POINTS 371 11.3.2 EQUILATERAL LIBRATION
POINTS 374
IMAGE 6
CONTENTS
11.4 CIRCULAR RESTRICTED THREE-BODY P R O B L E M 374
11.4.1 EQUATION O F MOTION 376
11.4.2 JACOBI'S INTEGRAL 377
11.4.3 STABILITY AT LIBRATION POINTS 380
11.4.4 INVARIANT MANIFOLDS 3 8 2
11.5 DYNAMICS A B O U T LIBRATION POINTS 386 11.5.1 EQUATION O F MOTION
386
11.5.2 COLLINEAR LIBRATION POINTS 3 8 8 11.5.3 EQUILATERAL LIBRATION
POINTS 400
PERTURBATIONS 409 GENERAL P R O B L E M 409
12.1.1 P R O B L E M SETTING 409
12.1.2 G A U S S I A N VARIATIONAL EQUATIONS 411 GRAVITATIONAL
PERTURBATIONS 4 1 2 12.2.1 GEOID 4 1 2
12.2.2 GRAVITATIONAL POTENTIAL 414 12.2.3 LAGRANGE'S PLANETARY EQUATIONS
4 2 2 12.2.4 NUMERICAL PERTURBATION METHODS 4 2 2 PERTURBATION EFFECTS
425
12.3.1 OBLATENESS PERTURBATIONS 427 12.3.2 HIGHER-ORDER PERTURBATIONS
431 12.3.3 PERTURBATION ORBIT DESIGN 436
RESONANT ORBITS 438
12.4.1 RESONANCE CONDITIONS 4 4 0
12.4.2 RESONANCE DYNAMICS 443 12.4.3 G P S ORBITS 446
12.4.4 GEOSTATIONARY ORBIT 4 5 0
SOLAR RADIATION P R E S S U R E 455 12.5.1 EFFECTS O F SOLAR RADIATION
456
12.5.2 ORBITAL EVOLUTION 4 5 9
12.5.3 CORRECTION MANEUVERS 462
DRAG 464
12.6.1 DRAG COEFFICIENT A N D PERTURBATIONS 465 12.6.2 ORBIT
CIRCULARIZATION 468
12.6.3 CIRCULAR ORBITS 4 7 2
12.6.4 ORBIT LIFETIME 4 7 5
CELESTIAL PERTURBATIONS 478 12.7.1 LUNISOLAR PERTURBATIONS 478 Y I N . 2
RELATIVISTIC PERTURBATIONS 4 8 2
13 REFERENCE FRAMES 489
13.1 SPACE FRAMES 489
13.2 T I M E FRAMES 495
12 ORBIT
1 2 . 1
1 2 . 2
12.3
12.4
12.5
1 2 . 6
12.7
IMAGE 7
CONTENTS X I I I
14 ORBIT DETERMINATION 4 9 9
14.1 ORBIT M E A S U R E M E N T S 4 9 9
14.1.1 RADAR TRACKING 4 9 9
14.1.2 O T H E R TRACKING SYSTEMS 500
14.2 METHODS O F ORBIT D E T E R M I N A T I O N 5 0 2
14.3 ORBIT ESTIMATION 503
14.3.1 SIMPLE ORBIT ESTIMATION 503
14.3.2 LAMBERT'S M E T H O D 5 0 4
14.4 CONVERSION O F ORBITAL ELEMENTS 506
14.4.1 STATE VECTOR TO KEPLERIAN ELEMENTS 506 14.4.2 KEPLERIAN ELEMENTS
TO STATE VECTOR 5 0 8 14.5 STATE VECTOR PROPAGATION 508
14.5.1 PROPAGATING STATE ELEMENTS 5 0 9 14.5.2 VECTOR PROPAGATION 511
14.5.3 UNIVERSAL PROPAGATOR 5 1 2
15 RIGID BODY DYNAMICS 513
15.1 F U N D A M E N T A L S O F ROTATION 513
15.1.1 ELEMENTARY PHYSICS 513
15.1.2 EQUATIONS O F ROTATIONAL MOTION 519 15.1.3 COORDINATE SYSTEMS 521
15.1.4 ROTATION-TO-TRANSLATION EQUIVALENCE 5 2 3 15.2 TORQUE-FREE MOTION
524
15.2.1 STABILITY 525
15.2.2 NUTATION 5 2 7
15.2.3 NUTATION U N D E R ENERGY DISSIPATION 5 3 0 15.2.4 GENERAL
TORQUE-FREE MOTION 533 15.3 GYRO U N D E R EXTERNAL TORQUE 534
15.4 GRAVITY-GRADIENT STABILIZATION 536 15.4.1 GRAVITY-GRADIENT TORQUE
536 15.4.2 GRAVITY-GRADIENT OSCILLATIONS 538
APPENDIX A PLANETARY PARAMETERS 543 A . L M E A N ORBIT RADIUS 543
A. 1.1 TITIUS-BODE LAW 543
A. 1.2 AVERAGE OVER TRUE ANOMALY 544 A. 1.3 T I M E AVERAGE 544
A . L M E A N ORBITAL VELOCITY 545
A.2.1 AVERAGE OVER TRUE ANOMALY 545 A.2.2 T I M E AVERAGE 546
APPENDIX B APPROXIMATE ANALYTICAL SOLUTION FOR UNEVEN STAGING 5 4 7
REFERENCES 551
INDEX 5 5 5 |
any_adam_object | 1 |
author | Walter, Ulrich 1954- |
author_GND | (DE-588)118017993 |
author_facet | Walter, Ulrich 1954- |
author_role | aut |
author_sort | Walter, Ulrich 1954- |
author_variant | u w uw |
building | Verbundindex |
bvnumber | BV037476758 |
callnumber-first | T - Technology |
callnumber-label | TL790 |
callnumber-raw | TL790 |
callnumber-search | TL790 |
callnumber-sort | TL 3790 |
callnumber-subject | TL - Motor Vehicles and Aeronautics |
classification_rvk | US 9500 |
classification_tum | VER 800f |
ctrlnum | (OCoLC)725142174 (DE-599)BVBBV037476758 |
dewey-full | 629.4 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 629 - Other branches of engineering |
dewey-raw | 629.4 |
dewey-search | 629.4 |
dewey-sort | 3629.4 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Verkehrstechnik Verkehr / Transport |
edition | 2., enl. and improved ed. |
format | Book |
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genre_facet | Lehrbuch |
id | DE-604.BV037476758 |
illustrated | Illustrated |
indexdate | 2024-11-06T11:03:35Z |
institution | BVB |
isbn | 9783527410651 9783527410354 |
language | English |
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spelling | Walter, Ulrich 1954- Verfasser (DE-588)118017993 aut Astronautics the physics of space flight Ulrich Walter 2., enl. and improved ed. Weinheim Wiley-VCH 2012 XXVIII, 568 S. Ill., graph. Darst. 25 cm txt rdacontent n rdamedia nc rdacarrier Astronautics Raumfahrttechnik (DE-588)4177061-4 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Raumfahrttechnik (DE-588)4177061-4 s DE-604 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022628362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Walter, Ulrich 1954- Astronautics the physics of space flight Astronautics Raumfahrttechnik (DE-588)4177061-4 gnd |
subject_GND | (DE-588)4177061-4 (DE-588)4123623-3 |
title | Astronautics the physics of space flight |
title_auth | Astronautics the physics of space flight |
title_exact_search | Astronautics the physics of space flight |
title_full | Astronautics the physics of space flight Ulrich Walter |
title_fullStr | Astronautics the physics of space flight Ulrich Walter |
title_full_unstemmed | Astronautics the physics of space flight Ulrich Walter |
title_short | Astronautics |
title_sort | astronautics the physics of space flight |
title_sub | the physics of space flight |
topic | Astronautics Raumfahrttechnik (DE-588)4177061-4 gnd |
topic_facet | Astronautics Raumfahrttechnik Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022628362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT walterulrich astronauticsthephysicsofspaceflight |