Absolute airborne gravimetry:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Zürich
Schweizerische Geodätische Kommission
2005
|
Schriftenreihe: | Geodätisch-geophysikalische Arbeiten in der Schweiz
69 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 141 - 142. -Zsfassung in dt. Sprache |
Beschreibung: | II, 142 S. Ill., graph. Darst., Kt. |
ISBN: | 3908440122 |
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adam_text | GEODATISCH-GEOPHYSIKALISCHE ARBEITEN IN DER SCHWEIZ (FORTSETZUNG DER
PUBLIKATIONSREIHE ASTRONOMISCH-GEODATISCHE ARBEITEN IN DER SCHWEIZ»)
HERAUSGEGEBEN VON DER SCHWEIZERISCHEN GEODATISCHEN KOMMISSION (ORGAN DER
AKADEMIE DER NATURWISSENSCHAFTEN SCHWEIZ) NEUNUNDSECHZIGSTER BAND VOLUME
69 ABSOLUTE AIRBORNE GRAVIMETRY HENRI BAUMANN 2005 ULB DARMSTADT
MIIIIIINIIIIIII 16114880 CONTENTS 1 INTRODUCTION 3 1.1 AIM OF THE
PROJECT 4 1.2 ABOUT AIRBORNE ABSOLUTE MEASUREMENTS OF G. 4 2 AIRBORNE
GRAVIMETRY 7 2.1 INTRODUCTION 7 2.2 THE MEASUREMENT OF G FROM AN
AIRCRAFT 7 2.2.7 77IE REFERENCE SYSTEMS IN TERRESTRIAL MECHANICS 7 2.2.2
RELATIVE MOVEMENTS AND INERTIA! FORCES 9 2.2.3 DYNAMICS IN THE
GEOCENTRIC REFERENCE SYSTEM, TIDAL FORCES 12 2.2.4 DYNAMICS IN THE
TERRESTRIAL REFERENCE SYSTEM, GRAVITY 13 2.2.5 DYNAMICS IN AN AIRCRAFT,
GRAVITY MEASUREMENTS. 14 2.2.6 DETERMINATION OF KINEMATIC ACCELERATIONS
15 3 AIRBORNE GRAVITY SYSTEMS 19 3.1 EXISTING AIRBORNE GRAVITY SYSTEMS
19 3.2 INTRODUCTION 19 3.2.1 THE KSS31 SYSTEM 19 3.2.2 THE BELL BGM-3
SYSTEM 20 3.2.3 THE A/S SYSTEM FROM LACOSTE & ROMBERG 20 3.3 AIRBORNE
ABSOLUTE GRAVIMETRY SYSTEMS 22 3.3.1 INTRODUCTION 22 3.3.2 ABSOLUTE
GRAVIMETRY: BASIC CONCEPTS 22 3.3.2.1 THE FREE-FALL METHOD 22 3.3.2.2
THE MEASUREMENT OF TIME AND DISTANCES 24 3.3.3 THE FG5-L GRAVIMETER 27
3.3.3.1 THE DETERMINATION OF G 28 3.3.3.2 PRINCIPAL CHARACTERISTICS OF
THE FG5-L 29 3.3.4 THE EPISENSOR ACCELEROMETER 29 3.3.4.1 WORKING
PRINCIPLE 29 3.3.4.2 EPISENSOR SPECIFICATIONS 30 3.3.5 INERTIAL
NAVIGATION SYSTEM (LN200) 30 3.3.5.1 FIBER-OPTIC GYRO 32 3.3.5.2
LN-200IMU SPECIFICATIONS 33 3.3.6 THE INSTRUMENT PLATFORM 34 3.3.7
CONCLUSION 34 4 THE DAMPING PLATFORMS 35 4.1 INTRODUCTION 35 4.2
ANALYSIS OF THE VIBRATIONS OF THE AIRCRAFT. 35 4.3 MECHANICAL SYSTEMS OF
ABSORPTION 37 4.3.1 INTRODUCTION 37 4.3.2 THE ACTIVE TABLE MODL-LFROM
HALCYONICS 38 4.4 THE MULTI-LAYER TABLE 40 4.4.1 INTRODUCTION 40 4.4.2
THE EXPERIMENTAL MOUNTING 41 4.4.3 DETERMINATION OF THE TRANSFER
FUNCTION OF THE MULTI-LAYER TABLE 42 4.4.4 APPLICATION TO THE VIBRATIONS
OF THE AIRCRAFT 43 4.5 THE HANGING TABLE 44 44 45 46 48 48 1 4.5.1 4.5.2
4.5.3 4.5.4 4.5.5 INTRODUCTION THE TABLE THE DETERMINATION OF THE
TRANSFER FUNCTION APPLICATION TO THE VIBRATIONS OF THE AIRCRAFT THE
FIRST DYNAMIC TEST 4.6 CONCLUSION 49 5 LABORATORY TESTS 51 5.1
INTRODUCTION 51 5.2 FAMILIARIZATION WITH THE FG5-L 51 5.3 FG5-L COMBINED
WITH AN EPISENSOR AND SOFTWARE VALIDATION 54 5.4 INFLUENCE OF THE
PLATFORMS 56 5.4.1 INFLUENCE OF THE STRAP-DOWN TABLE 56 5.4.2 INFLUENCE
OF THE PLATFORM THE DAMPING TABLE 58 5.5 DETAILED ANALYSIS OF A G
MEASUREMENT IN LABORATORY 59 5.5.7 LEAST SQUARES ADJUSTMENT 59 5.5.1.1
THEORY 59 5.5.2 STATISTICAL ANALYSIS 63 5.5.3 FREQUENCY ANALYSIS 65
5.5.4 ANALYSIS OF THE MEASUREMENTS CARRIED OUT IN THE LABORATORY 65
5.5.4.1 ANALYSIS OF THE FG5-L COMPONENTS 65 5.5.4.2 EXPECTED RESOLUTION
FOR ONE SINGLE DROP 66 5.5.4.3 SPECTRAL ANALYSIS 68 5.6 CONCLUSIONS 70 6
FIRST DYNAMIC MEASUREMENT IN A TRUCK 71 6.1 INTRODUCTION 71 6.2 LOCATION
OF THE TEST LINE 71 6.3 EXPERIMENTAL BUS-SETUP 71 6.4 MEASUREMENTS IN
STRAP-DOWN CONFIGURATION 73 6.4.1 STATIC MEASUREMENTS 73 6.4.2
MEASUREMENT IN DYNAMIC MODE 86 6.5 MEASUREMENTS WITH THE HANGING TABLE
92 6.5.7 DISCUSSION 97 7 THE AIRBORNE TEST SURVEY 99 7.1 INTRODUCTION 99
7.2 THE AIRCRAFT 99 7.3 LOCATION OF THE TEST SURVEY 101 7.4 THE
POSITIONING OF THE AIRCRAFT 102 7.5 EXPERIMENTAL MOUNTING AND
MEASUREMENTS 104 7.6 DATA ACQUISITION DURING THE FLIGHT 105 8 PROCESSING
OF THE AIRBORNE GRAVITY DATA 107 8.1 PROCESSING OF THE GPS DATA. 107
8.1.1 SINGLE DIFFERENCE EQUATION OF OBSERVATION 107 8.1.2 STRATEGY FOR
THE GPS DATA PROCESSING IN KINEMATICS MODE 109 8.1.3 ACCURACY OF THE
KINEMATICS VARIABLES COMPUTED WITH GPS DATA 111 8.2 PROCESSING OF THE
GRAVITY DATA 117 8.2.1 UPWARD CONTINUATION OF THE GROUND DATA 117 8.2.2
ANALYSIS OF THE PERTURBING ACCELERATIONS PRODUCED BY THE AIRCRAFT 119
8.2.3 ESTIMATION OF THE APPARENT ACCELERATION A APP FOR A SINGLE FALL.
123 8.2.4 CORRECTION OFTHE FUNCTIONS A APPATENT {X{T),Y{T),Z{T)) 129 9
CONCLUSIONS AND RECOMMENDATIONS 135
|
adam_txt |
GEODATISCH-GEOPHYSIKALISCHE ARBEITEN IN DER SCHWEIZ (FORTSETZUNG DER
PUBLIKATIONSREIHE ASTRONOMISCH-GEODATISCHE ARBEITEN IN DER SCHWEIZ»)
HERAUSGEGEBEN VON DER SCHWEIZERISCHEN GEODATISCHEN KOMMISSION (ORGAN DER
AKADEMIE DER NATURWISSENSCHAFTEN SCHWEIZ) NEUNUNDSECHZIGSTER BAND VOLUME
69 ABSOLUTE AIRBORNE GRAVIMETRY HENRI BAUMANN 2005 ULB DARMSTADT
MIIIIIINIIIIIII 16114880 CONTENTS 1 INTRODUCTION 3 1.1 AIM OF THE
PROJECT 4 1.2 ABOUT AIRBORNE ABSOLUTE MEASUREMENTS OF G. 4 2 AIRBORNE
GRAVIMETRY 7 2.1 INTRODUCTION 7 2.2 THE MEASUREMENT OF G FROM AN
AIRCRAFT 7 2.2.7 77IE REFERENCE SYSTEMS IN TERRESTRIAL MECHANICS 7 2.2.2
RELATIVE MOVEMENTS AND INERTIA! FORCES 9 2.2.3 DYNAMICS IN THE
GEOCENTRIC REFERENCE SYSTEM, TIDAL FORCES 12 2.2.4 DYNAMICS IN THE
TERRESTRIAL REFERENCE SYSTEM, GRAVITY 13 2.2.5 DYNAMICS IN AN AIRCRAFT,
GRAVITY MEASUREMENTS. 14 2.2.6 DETERMINATION OF KINEMATIC ACCELERATIONS
15 3 AIRBORNE GRAVITY SYSTEMS 19 3.1 EXISTING AIRBORNE GRAVITY SYSTEMS
19 3.2 INTRODUCTION 19 3.2.1 THE KSS31 SYSTEM 19 3.2.2 THE BELL BGM-3
SYSTEM 20 3.2.3 THE A/S SYSTEM FROM LACOSTE & ROMBERG 20 3.3 AIRBORNE
ABSOLUTE GRAVIMETRY SYSTEMS 22 3.3.1 INTRODUCTION 22 3.3.2 ABSOLUTE
GRAVIMETRY: BASIC CONCEPTS 22 3.3.2.1 THE FREE-FALL METHOD 22 3.3.2.2
THE MEASUREMENT OF TIME AND DISTANCES 24 3.3.3 THE FG5-L GRAVIMETER 27
3.3.3.1 THE DETERMINATION OF G 28 3.3.3.2 PRINCIPAL CHARACTERISTICS OF
THE FG5-L 29 3.3.4 THE EPISENSOR ACCELEROMETER 29 3.3.4.1 WORKING
PRINCIPLE 29 3.3.4.2 EPISENSOR SPECIFICATIONS 30 3.3.5 INERTIAL
NAVIGATION SYSTEM (LN200) 30 3.3.5.1 FIBER-OPTIC GYRO 32 3.3.5.2
LN-200IMU SPECIFICATIONS 33 3.3.6 THE INSTRUMENT PLATFORM 34 3.3.7
CONCLUSION 34 4 THE DAMPING PLATFORMS 35 4.1 INTRODUCTION 35 4.2
ANALYSIS OF THE VIBRATIONS OF THE AIRCRAFT. 35 4.3 MECHANICAL SYSTEMS OF
ABSORPTION 37 4.3.1 INTRODUCTION 37 4.3.2 THE ACTIVE TABLE MODL-LFROM
HALCYONICS 38 4.4 THE MULTI-LAYER TABLE 40 4.4.1 INTRODUCTION 40 4.4.2
THE EXPERIMENTAL MOUNTING 41 4.4.3 DETERMINATION OF THE TRANSFER
FUNCTION OF THE MULTI-LAYER TABLE 42 4.4.4 APPLICATION TO THE VIBRATIONS
OF THE AIRCRAFT 43 4.5 THE HANGING TABLE 44 44 45 46 48 48 1 4.5.1 4.5.2
4.5.3 4.5.4 4.5.5 INTRODUCTION THE TABLE THE DETERMINATION OF THE
TRANSFER FUNCTION APPLICATION TO THE VIBRATIONS OF THE AIRCRAFT THE
FIRST DYNAMIC TEST 4.6 CONCLUSION 49 5 LABORATORY TESTS 51 5.1
INTRODUCTION 51 5.2 FAMILIARIZATION WITH THE FG5-L 51 5.3 FG5-L COMBINED
WITH AN EPISENSOR AND SOFTWARE VALIDATION 54 5.4 INFLUENCE OF THE
PLATFORMS 56 5.4.1 INFLUENCE OF THE STRAP-DOWN TABLE 56 5.4.2 INFLUENCE
OF THE PLATFORM THE DAMPING TABLE 58 5.5 DETAILED ANALYSIS OF A G
MEASUREMENT IN LABORATORY 59 5.5.7 LEAST SQUARES ADJUSTMENT 59 5.5.1.1
THEORY 59 5.5.2 STATISTICAL ANALYSIS 63 5.5.3 FREQUENCY ANALYSIS 65
5.5.4 ANALYSIS OF THE MEASUREMENTS CARRIED OUT IN THE LABORATORY 65
5.5.4.1 ANALYSIS OF THE FG5-L COMPONENTS 65 5.5.4.2 EXPECTED RESOLUTION
FOR ONE SINGLE DROP 66 5.5.4.3 SPECTRAL ANALYSIS 68 5.6 CONCLUSIONS 70 6
FIRST DYNAMIC MEASUREMENT IN A TRUCK 71 6.1 INTRODUCTION 71 6.2 LOCATION
OF THE TEST LINE 71 6.3 EXPERIMENTAL BUS-SETUP 71 6.4 MEASUREMENTS IN
STRAP-DOWN CONFIGURATION 73 6.4.1 STATIC MEASUREMENTS 73 6.4.2
MEASUREMENT IN DYNAMIC MODE 86 6.5 MEASUREMENTS WITH THE HANGING TABLE
92 6.5.7 DISCUSSION 97 7 THE AIRBORNE TEST SURVEY 99 7.1 INTRODUCTION 99
7.2 THE AIRCRAFT 99 7.3 LOCATION OF THE TEST SURVEY 101 7.4 THE
POSITIONING OF THE AIRCRAFT 102 7.5 EXPERIMENTAL MOUNTING AND
MEASUREMENTS 104 7.6 DATA ACQUISITION DURING THE FLIGHT 105 8 PROCESSING
OF THE AIRBORNE GRAVITY DATA 107 8.1 PROCESSING OF THE GPS DATA. 107
8.1.1 SINGLE DIFFERENCE EQUATION OF OBSERVATION 107 8.1.2 STRATEGY FOR
THE GPS DATA PROCESSING IN KINEMATICS MODE 109 8.1.3 ACCURACY OF THE
KINEMATICS VARIABLES COMPUTED WITH GPS DATA 111 8.2 PROCESSING OF THE
GRAVITY DATA 117 8.2.1 UPWARD CONTINUATION OF THE GROUND DATA 117 8.2.2
ANALYSIS OF THE PERTURBING ACCELERATIONS PRODUCED BY THE AIRCRAFT 119
8.2.3 ESTIMATION OF THE APPARENT ACCELERATION A APP FOR A SINGLE FALL.
123 8.2.4 CORRECTION OFTHE FUNCTIONS A APPATENT {X{T),Y{T),Z{T)) 129 9
CONCLUSIONS AND RECOMMENDATIONS 135 |
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illustrated | Illustrated |
index_date | 2024-07-02T16:18:24Z |
indexdate | 2024-07-09T20:51:29Z |
institution | BVB |
isbn | 3908440122 |
language | English |
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physical | II, 142 S. Ill., graph. Darst., Kt. |
publishDate | 2005 |
publishDateSearch | 2005 |
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publisher | Schweizerische Geodätische Kommission |
record_format | marc |
series | Geodätisch-geophysikalische Arbeiten in der Schweiz |
series2 | Geodätisch-geophysikalische Arbeiten in der Schweiz |
spelling | Baumann, Henri Verfasser aut Absolute airborne gravimetry Henri Baumann Zürich Schweizerische Geodätische Kommission 2005 II, 142 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Geodätisch-geophysikalische Arbeiten in der Schweiz 69 Literaturverz. S. 141 - 142. -Zsfassung in dt. Sprache Gravimeters (Geophysical instruments) Gravity Measurement Absolutmessung (DE-588)4377596-2 gnd rswk-swf Gravimetrie (DE-588)4138998-0 gnd rswk-swf Aerogeophysik (DE-588)4277159-6 gnd rswk-swf Gravimetrie (DE-588)4138998-0 s DE-604 Aerogeophysik (DE-588)4277159-6 s Absolutmessung (DE-588)4377596-2 s Geodätisch-geophysikalische Arbeiten in der Schweiz 69 (DE-604)BV001895327 http://www.gbv.de/du/services/agi/08A2A085DAA81F88C1257101003A8106/000000016114880 lizenzfrei Inhaltsverzeichnis HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015369152&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Baumann, Henri Absolute airborne gravimetry Geodätisch-geophysikalische Arbeiten in der Schweiz Gravimeters (Geophysical instruments) Gravity Measurement Absolutmessung (DE-588)4377596-2 gnd Gravimetrie (DE-588)4138998-0 gnd Aerogeophysik (DE-588)4277159-6 gnd |
subject_GND | (DE-588)4377596-2 (DE-588)4138998-0 (DE-588)4277159-6 |
title | Absolute airborne gravimetry |
title_auth | Absolute airborne gravimetry |
title_exact_search | Absolute airborne gravimetry |
title_exact_search_txtP | Absolute airborne gravimetry |
title_full | Absolute airborne gravimetry Henri Baumann |
title_fullStr | Absolute airborne gravimetry Henri Baumann |
title_full_unstemmed | Absolute airborne gravimetry Henri Baumann |
title_short | Absolute airborne gravimetry |
title_sort | absolute airborne gravimetry |
topic | Gravimeters (Geophysical instruments) Gravity Measurement Absolutmessung (DE-588)4377596-2 gnd Gravimetrie (DE-588)4138998-0 gnd Aerogeophysik (DE-588)4277159-6 gnd |
topic_facet | Gravimeters (Geophysical instruments) Gravity Measurement Absolutmessung Gravimetrie Aerogeophysik |
url | http://www.gbv.de/du/services/agi/08A2A085DAA81F88C1257101003A8106/000000016114880 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015369152&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV001895327 |
work_keys_str_mv | AT baumannhenri absoluteairbornegravimetry |
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