Geodesy: introduction to geodetic datum and geodetic systems
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2014
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XXI, 401 S. Ill., graph. Darst. |
ISBN: | 3642412440 9783642412448 |
Internformat
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CONTENTS
1 INTRODUCTION 1
1.1 OBJECTIVES AND CLASSIFICATIONS OF GEODESY 1
1.1.1 OBJECTIVES OF GEODESY 1
1.1.2 CLASSIFICATIONS OF GEODESY 2
1.2 APPLICATIONS OF GEODESY 3
1.2.1 APPLICATIONS OF GEODESY IN TOPOGRAPHIC MAPPING,
ENGINEERING CONSTRUCTION, AND TRANSPORTATION 3
1.2.2 APPLICATIONS OF GEODESY IN SPACE TECHNOLOGY 5
1.2.3 APPLICATIONS OF GEODESY IN GEOSCIENCE RESEARCH 6
1.2.4 APPLICATIONS OF GEODESY IN RESOURCE DEVELOPMENT,
ENVIRONMENTAL MONITORING, AND PROTECTION 8
1.2.5 APPLICATIONS OF GEODESY IN DISASTER PREVENTION, RESISTANCE,
AND MITIGATION 10
1.3 BRIEF HISTORY AND TRENDS IN THE DEVELOPMENT OF GEODESY 12
1.3.1 BRIEF HISTORY OF GEODESY 12
1.3.2 TRENDS IN THE DEVELOPMENT OF GEODESY 16
REVIEW AND STUDY QUESTIONS 19
2 GEODETIC DATA COLLECTION TECHNIQUES 21
2.1 TERRESTRIAL TRIANGULATERATION 21
2.1.1 ANGLE MEASUREMENT 21
2.1.2 DISTANCE MEASUREMENT 27
2.1.3 ASTRONOMICAL MEASUREMENT 30
2.2 HEIGHT MEASUREMENT 33
2.2.1 LEVELING 33
2.2.2 TRIGONOMETRIC LEVELING 35
2.3 SPACE GEODETIC SURVEYING 37
2.3.1 GPS SURVEYING 37
2.3.2 SATELLITE LASER RANGING 43
2.3.3 VERY LONG BASELINE INTERFEROMETRY 47
2.3.4 SATELLITE ALTIMETRY 53
HTTP://D-NB.INFO/103886772X
XVI
CONTENTS
2.4 GRAVIMETRY 58
2.4.1 ABSOLUTE GRAVIMETRY 58
2.4.2 RELATIVE GRAVIMETRY 62
2.4.3 AIRBORNE GRAVIMETRY 62
2.4.4 SATELLITE GRAVIMETRY 66
REVIEW AND STUDY QUESTIONS 68
3 GEODETIC DATUM AND GEODETIC CONTROL NETWORKS 71
3.1 THE HORIZONTAL DATUM AND HORIZONTAL CONTROL NETWORKS 72
3.1.1 GEODETIC ORIGIN AND THE HORIZONTAL DATUM 72
3.1.2 METHODS OF ESTABLISHING A HORIZONTAL CONTROL
NETWORK 74
3.1.3 PRINCIPLES OF ESTABLISHING A NATIONAL HORIZONTAL CONTROL
NETWORK 76
3.1.4 PLANS FOR ESTABLISHING A NATIONAL CONTROL NETWORK 78
3.1.5 ESTABLISHMENT OF A HORIZONTAL CONTROL NETWORK 83
3.2 THE VERTICAL DATUM AND VERTICAL CONTROL NETWORKS 87.
3.2.1 THE VERTICAL DATUM AND LEVELING ORIGIN 87
3.2.2 THE SOUNDING DATUM 90
3.2.3 PLANS FOR ESTABLISHING CHINA'S NATIONAL VERTICAL CONTROL
NETWORK AND ITS PRECISION 91
3.2.4 LEVELING ROUTE DESIGN, BENCHMARK SITE SELECTION, AND
MONUMENTATION 93
3.3 THE THREE-DIMENSIONAL COORDINATE DATUM AND SATELLITE GEODETIC
CONTROL NETWORKS 95
3.3.1 THE THREE-DIMENSIONAL COORDINATE DATUM 96
3.3.2 ESTABLISHMENT OF SATELLITE GEODETIC CONTROL NETWORKS. . . 115
3.4 THE GRAVITY DATUM AND GRAVITY CONTROL NETWORKS 120
3.4.1 THE GRAVITY DATUM 121
3.4.2 BASIC GRAVIMETRIC NETWORKS IN CHINA 123
3.4.3 ESTABLISHMENT OF CHINA'S NATIONAL GRAVITY NETWORKS. . 127
REVIEW AND STUDY QUESTIONS 130
4 THE GEOID AND DIFFERENT HEIGHT SYSTEMS 131
4.1 GRAVITY POTENTIAL OF THE EARTH AND GEOID 132
4.1.1 GRAVITY AND GRAVITY POTENTIAL 132
4.1.2 EARTH GRAVITY FIELD MODEL 137
4.1.3 LEVEL SURFACE AND THE GEOID 142
4.2 EARTH ELLIPSOID AND NORMAL ELLIPSOID 145
4.2.1 EARTH ELLIPSOID 145
4.2.2 NORMAL ELLIPSOID AND NORMAL GRAVITY 147
4.2.3 DISTURBING POTENTIAL 150
4.3 HEIGHT SYSTEMS 151
4.3.1 REQUIREMENTS FOR SELECTING HEIGHT SYSTEMS 151
4.3.2 NON-UNIQUENESS OF LEVELED HEIGHT 152
CONTENTS XVN
4.3.3 ORTHOMETRIC HEIGHT 153
4.3.4 NORMAL HEIGHT 154
4.3.5 DYNAMIC HEIGHT 155
4.3.6 GEOPOTENTIAL NUMBER 157
4.3.7 GEODETIC HEIGHT 157
4.4 RELATIONSHIP AND TRANSFORMATION BETWEEN DIFFERENT HEIGHT
SYSTEMS . 158
4.4.1 RELATIONSHIP BETWEEN ORTHOMETRIC HEIGHT,
NORMAL HEIGHT, AND GEODETIC HEIGHT 158
4.4.2 DETERMINATION OF HEIGHT ANOMALY OR GEOID HEIGHT 160
4.4.3 GRID MODELS OF HEIGHT ANOMALY OR GEOID HEIGHT 162
REVIEW AND STUDY QUESTIONS 163
5 REFERENCE ELLIPSOID AND THE GEODETIC COORDINATE SYSTEM 165
5.1 FUNDAMENTALS OF SPHERICAL TRIGONOMETRY 165
5.1.1 SPHERICAL TRIANGLE 165
5.1.2 SPHERICAL EXCESS 166
5.1.3 FORMULAE FOR SPHERICAL TRIGONOMETRY 167
5.2 REFERENCE ELLIPSOID 170
5.2.1 REFERENCE SURFACE FOR GEODETIC SURVEYING
COMPUTATIONS 170
5.2.2 GEOMETRIC PARAMETERS OF THE REFERENCE ELLIPSOID AND THEIR
CORRELATIONS 173
5.3 RELATIONSHIP BETWEEN THE GEODETIC COORDINATE SYSTEM AND THE
GEODETIC SPATIAL RECTANGULAR COORDINATE SYSTEM 176
5.3.1 DEFINITIONS OF THE GEODETIC COORDINATE SYSTEM AND THE
GEODETIC SPATIAL RECTANGULAR COORDINATE SYSTEM 176
5.3.2 EXPRESSIONS OF THE ELLIPSOIDAL NORMAL LENGTH 177
5.3.3 TRANSFORMATION BETWEEN GEODETIC AND CARTESIAN
COORDINATES 179
5.4 NORMAL SECTION AND GEODESIC 182
5.4.1 RADIUS OF CURVATURE OF A NORMAL SECTION IN AN ARBITRARY
DIRECTION 182
5.4.2 RADIUS OF CURVATURE OF THE MERIDIAN, RADIUS OF CURVATURE IN
THE PRIME VERTICAL, AND MEAN RADIUS OF CURVATURE 188
5.4.3 LENGTH OF A MERIDIAN ARC AND LENGTH OF A PARALLEL ARC. 192
5.4.4 RECIPROCAL NORMAL SECTIONS 200
5.4.5 THE GEODESIC 204
5.4.6 SOLUTION OF ELLIPSOIDAL TRIANGLES 211
5.5 RELATIONSHIP BETWEEN TERRESTRIAL ELEMENTS OF TRIANGULATERATION AND
THE CORRESPONDING ELLIPSOIDAL ELEMENTS 213
5.5.1 SIGNIFICANCE OF AND REQUIREMENTS FOR REDUCTION OF
TERRESTRIAL TRIANGULATERATION ELEMENTS TO THE ELLIPSOID. . . 213
5.5.2 REDUCTION OF HORIZONTAL DIRECTIONS TO THE ELLIPSOID 215
5.5.3 REDUCTION OF THE OBSERVED ZENITH DISTANCE 222
XVIII CONTENTS
5.5.4 REDUCTION OF THE OBSERVED SLOPE DISTANCE
TO THE ELLIPSOID 225
5.5.5 RELATIONSHIP BETWEEN ASTRONOMICAL LONGITUDE AND LATITUDE
AND GEODETIC LONGITUDE AND LATITUDE (FORMULA FOR
DEFLECTION OF THE VERTICAL) 228
5.5.6 RELATIONSHIP BETWEEN ASTRONOMICAL AZIMUTH AND GEODETIC
AZIMUTH (LAPLACE AZIMUTH FORMULA) 231
5.6 RELATIONSHIP BETWEEN THE GEODETIC COORDINATE SYSTEM AND THE
GEODESIC POLAR COORDINATE SYSTEM 233
5.6.1 GEODESIC POLAR COORDINATE SYSTEMS AND THE SOLUTION OF
GEODETIC PROBLEMS 233
5.6.2 SERIES EXPANSIONS OF THE SOLUTION OF THE GEODETIC
PROBLEM 236
5.6.3 BESSEL'S FORMULA FOR THE SOLUTION OF THE GEODETIC
PROBLEM 239
5.6.4 COMPUTATIONS OF BESSEL'S DIRECT SOLUTION OF THE
GEODETIC PROBLEM 249
5.6.5 COMPUTATIONS OF BESSEL'S INVERSE SOLUTION OF THE
GEODETIC PROBLEM 255
REVIEW AND STUDY QUESTIONS 261
6 GAUSS AND UTM CONFORMAL PROJECTIONS AND THE PLANE RECTANGULAR
COORDINATE SYSTEM 265
6.1 OVERVIEW OF PROJECTION 265
6.1.1 AIMS OF PROJECTION 265
6.1.2 DEFINITION OF PROJECTION 266
6.1.3 CONFORMAL PROJECTION AND CONFORMALITY 267
6.2 GENERAL CONDITION FOR CONFORMAL PROJECTION 268
6.2.1 OVERVIEW 268
6.2.2 EXPRESSION OF SCALE FACTOR 269
6.2.3 GENERAL CONDITION FOR CONFORMAL PROJECTION 272
6.3 FUNDAMENTALS OF THE GAUSS PROJECTION 274
6.3.1 HISTORY AND DEVELOPMENT OF THE GAUSS PROJECTION 274
6.3.2 CONDITIONS FOR GAUSS PROJECTION 275
6.3.3 ZONE-DIVIDING OF THE GAUSS PROJECTION 276
6.3.4 NATURAL COORDINATES AND FALSE (BIASED) COORDINATES 278
6.4 DIRECT AND INVERSE SOLUTIONS OF THE GAUSS PROJECTION AND
TRANSFORMATION BETWEEN ADJACENT ZONES 279
6.4.1 FORMULA FOR DIRECT SOLUTION OF THE GAUSS PROJECTION 279
6.4.2 FORMULA FOR INVERSE SOLUTION OF THE GAUSS
PROJECTION 288
6.4.3 .TRANSFORMATION OF GAUSS PLANE COORDINATES BETWEEN
ADJACENT ZONES 295
CONTENTS XIX
6.5 ELEMENTS OF THE GEODETIC CONTROL NETWORK REDUCED TO THE
GAUSS PLANE 299
6.5.1 REDUCTION OF THE GEODETIC CONTROL NETWORK ON THE ELLIPSOID
TO THE GAUSS PLANE 299
6.5.2 ARC-TO-CHORD CORRECTION 302
6.5.3 CORRECTION OF DISTANCE 308
6.5.4 GRID CONVERGENCE 318
6.5.5 COMPUTATION OF GRID BEARING 322
6.6 UNIVERSAL TRANSVERSE MERCATOR PROJECTION 323
6.6.1 DEFINITION OF UTM PROJECTION 323
6.6.2 COMPUTATIONAL FORMULA FOR UTM PROJECTION 324
REVIEW AND STUDY QUESTIONS 326
7 ESTABLISHMENT OF GEODETIC COORDINATE SYSTEMS 327
7.1 EULER ANGLES IN GEODETIC COORDINATE SYSTEMS 327
7.1.1 VECTOR ANALYSIS IN COORDINATE TRANSFORMATIONS 327
7.1.2 COORDINATE TRANSFORMATIONS IN TERMS OF EULER ANGLES
AS ROTATION PARAMETERS 329
7.1.3 GENERALIZED FORMULAE FOR DEFLECTION OF THE VERTICAL AND
LAPLACE AZIMUTH 332
7.2 TRANSFORMATION BETWEEN DIFFERENT GEODETIC COORDINATE
SYSTEMS 332
7.2.1 TRANSFORMATION BETWEEN DIFFERENT GEODETIC CARTESIAN
COORDINATE SYSTEMS 332
7.2.2 TRANSFORMATION BETWEEN DIFFERENT GEODETIC COORDINATE
SYSTEMS 335
7.2.3 GRID MODEL OF COORDINATE TRANSFORMATION 339
7.3 CLASSICAL METHODS FOR ELLIPSOID ORIENTATION 340
7.3.1 GEODETIC ORIGIN DATA AND ELLIPSOID ORIENTATION 340
7.3.2 ARC MEASUREMENT EQUATION 343
7.3.3 SIGNIFICANCE OF THE CLASSICAL METHOD OF ELLIPSOID ORIENTATION
IN UNDERSTANDING THE PRINCIPLE OF ESTABLISHING A MODERN
GEODETIC COORDINATE SYSTEM 348
7.4 CONVENTIONAL TERRESTRIAL REFERENCE SYSTEM 348
7.4.1 THE GEOCENTRIC COORDINATE SYSTEM AND ITS APPLICATION. . . 348
7.4.2 DEFINITIONS OF THE CTRS AND THE CONVENTIONAL TERRESTRIAL
REFERENCE FRAME 352
7.4.3 ESTABLISHMENT AND MAINTENANCE OF THE CTRF 357
7.4.4 INTERNATIONAL TERRESTRIAL REFERENCE FRAME AND THE WORLD
GEODETIC SYSTEM 1984 361
7.5 GEODETIC COORDINATE SYSTEMS IN CHINA 364
7.5.1 BEIJING COORDINATE SYSTEM 1954 364
7.5.2 CHINA'S NATIONAL GEODETIC COORDINATE SYSTEM 1980
(XI'AN COORDINATE SYSTEM 1980) 366
7.5.3 BEIJING COORDINATE SYSTEM 1954 (NEW) 371
XX CONTENTS
7.5.4 GEOCENTRIC COORDINATE SYSTEM 1978 375
7.5.5 GEOCENTRIC COORDINATE SYSTEM 1988 376
7.5.6 CHINA GEODETIC COORDINATE SYSTEM 2000 377
REVIEW AND STUDY QUESTIONS 382
BIBLIOGRAPHY 385
INDEX 397 |
any_adam_object | 1 |
author | Lü, Zhipeng Qu, Yunying Qiao, Shubo |
author_GND | (DE-588)13415469X |
author_facet | Lü, Zhipeng Qu, Yunying Qiao, Shubo |
author_role | aut aut aut |
author_sort | Lü, Zhipeng |
author_variant | z l zl y q yq s q sq |
building | Verbundindex |
bvnumber | BV041786590 |
classification_rvk | RB 10109 UT 1600 UT 1650 |
ctrlnum | (OCoLC)882114440 (DE-599)DNB103886772X |
dewey-full | 526.1 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 526 - Mathematical geography |
dewey-raw | 526.1 |
dewey-search | 526.1 |
dewey-sort | 3526.1 |
dewey-tens | 520 - Astronomy and allied sciences |
discipline | Physik Geologie / Paläontologie Geographie |
format | Book |
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spelling | Lü, Zhipeng Verfasser (DE-588)13415469X aut Geodesy introduction to geodetic datum and geodetic systems Zhiping Lu ; Yunying Qu ; Shubo Qiao Berlin [u.a.] Springer 2014 XXI, 401 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Geodäsie (DE-588)4020202-1 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Geodäsie (DE-588)4020202-1 s DE-604 Qu, Yunying Verfasser aut Qiao, Shubo Verfasser aut Erscheint auch als Online-Ausgabe 978-3-642-41245-5 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=4431263&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027232313&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Lü, Zhipeng Qu, Yunying Qiao, Shubo Geodesy introduction to geodetic datum and geodetic systems Geodäsie (DE-588)4020202-1 gnd |
subject_GND | (DE-588)4020202-1 (DE-588)4123623-3 |
title | Geodesy introduction to geodetic datum and geodetic systems |
title_auth | Geodesy introduction to geodetic datum and geodetic systems |
title_exact_search | Geodesy introduction to geodetic datum and geodetic systems |
title_full | Geodesy introduction to geodetic datum and geodetic systems Zhiping Lu ; Yunying Qu ; Shubo Qiao |
title_fullStr | Geodesy introduction to geodetic datum and geodetic systems Zhiping Lu ; Yunying Qu ; Shubo Qiao |
title_full_unstemmed | Geodesy introduction to geodetic datum and geodetic systems Zhiping Lu ; Yunying Qu ; Shubo Qiao |
title_short | Geodesy |
title_sort | geodesy introduction to geodetic datum and geodetic systems |
title_sub | introduction to geodetic datum and geodetic systems |
topic | Geodäsie (DE-588)4020202-1 gnd |
topic_facet | Geodäsie Lehrbuch |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=4431263&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027232313&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT luzhipeng geodesyintroductiontogeodeticdatumandgeodeticsystems AT quyunying geodesyintroductiontogeodeticdatumandgeodeticsystems AT qiaoshubo geodesyintroductiontogeodeticdatumandgeodeticsystems |