An introduction to underwater acoustics: principles and applications
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg
Springer
[2010]
Chichester, UK Praxis Publishing |
Ausgabe: | Second edition |
Schriftenreihe: | Springer Praxis books in geophysical sciences
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke |
Beschreibung: | xxxvi, 680 Seiten Illustrationen, Diagramme |
ISBN: | 9783540784807 9783662499696 |
Internformat
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245 | 1 | 0 | |a An introduction to underwater acoustics |b principles and applications |c Xavier Lurton |
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Datensatz im Suchindex
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adam_text | CONTENTS FOREWORD XIII PREFACE XV USI OF FIGURES XIX LISI OF TABLES XXIX
GLOSSARY OF ABHROIATIONS AND ACRONYMS XXXI CO-AUTHORS TO THE SECOND
EDITION XXXV 1 THE DEVELOPMENT OF UNDERWATER ACOUSTICS 1 1.1 RATIONALE 1
1.1.1 EXPLORING THE UNDERWATER ENVIRONMENT 1 1.1.2 INFLUENCE OF THE
PROPAGATION MEDIUM 2 1.1.3 STRUCTURE OF SONAR SYSTEMS 4 1.2 HISTORICAL
HIGHLIGHTS 5 1.2.1 THE PIONEERS 5 1.2.2 THE SECOND WORLD WAR 6 1.2.3
AFTER 1945 6 1.2.4 CIVILIAN DEVELOPMENTS 7 1.3 OUTLINE OF UNDERWATER
ACOUSTIC APPLICATIONS 8 1.3.1 MILITARY APPLICATIONS 8 1.3.2 CIVILIAN
APPLICATIONS 9 2 UNDERWATER ACOUSTIC WAVE PROPAGATION 13 2.1 ACOUSTIC
WAVES 14 1.I.I ACOUSTIC PRESSURE 14 2.1.2 VELOCITY AND DENSITY 15 2.1.3
FREQUENCY AND WAVELENGTH 16 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/988750287 DIGITALISIERT DURCH VI CONTENTS 2.1.4 THE
WAVE EQUATION AND ITS ELEMENTARY SOLUTIONS 17 2.1.5 INTENSITY AND POWER
19 2.2 LOGARITHMIC NOTATION: DECIBELS AND REFERENCES 20 2.2.1 THE
DECIBEL 20 2.2.2 ABSOLUTE REFERENCES AND LEVELS 21 2.3 BASICS OF
PROPAGATION LOSSES 22 2.3.1 GEOMETRIC SPREADING LOSSES 22 2.3.2
ABSORPTION LOSSES 23 2.3.3 CONVENTIONAL PROPAGATION LOSS 27 2.3.4 EFFECT
FROM AIR BUBBLES 28 2.4 MULTIPLE PATHS 30 2.4.1 NOTION OF MULTIPLE PATHS
30 2.4.2 SEA-SURFACE INTERFERENCE 31 2.4.3 AN IDEAL MODEL OF MULTIPATH
PROPAGATION 33 2.4.4 AVERAGE ENERGY FLUX IN A WAVEGUIDE 35 2.4.5
GENERAL-CASE SOUND FIELD PREDICTION 37 2.5 OTHER DEFORMATIONS OF
UNDERWATER ACOUSTIC SIGNALS 38 2.5.1 DOPPLER EFFECT 38 2.5.2 TIME
CHARACTERISTICS OF ECHOES 40 2.6 SOUND VELOCITY IN THE OCEAN 41 2.6.1
VELOCITY PARAMETERS 41 2.6.2 SOUND VELOCITY MODELS 42 2.6.3 SOUND
VELOCITY MEASUREMENTS 44 2.6.4 DEPTH-VELOCITY PROFILES 45 2.7
GEOMETRICAL INVESTIGATION OF THE ACOUSTIC FIELD 47 2.7.1 DEPTH-VELOCITY
PROFILE REFRACTION 47 2.7.2 SOUND RAY CALCULATIONS IN A STRATIFIED OCEAN
50 2.7.3 LOSSES FROM GEOMETRIC SPREADING 52 2.7.4 APPLICATION OF
GEOMETRIC ACOUSTICS 53 2.8 UNDERWATER ACOUSTIC PROPAGATION: CASE STUDIES
54 2.8.1 CONSTANT-VELOCITY PROFILE 54 2.8.2 ISOTHERMAL PROFILE 56 2.8.3
DEEP SOUND CHANNEL 58 2.9 WAVE CALCULATIONS OF THE ACOUSTIC FIELD 62
2.9. CONTENTS VII 3.3 POINT TARGETS 88 3.3.1 THE IDEAL SPHERE 88 3.3.2
FLUID SPHERES 90 3.3.3 SCATTERING BY GAS BUBBLES 91 3.3.4 TARGET
STRENGTH OF FISH 92 3.3.5 ARBITRARILY SHAPED TARGET 94 3.3.6 SUBMARINE
ECHOES 94 3.4 EXTENDED TARGETS 96 3.4.1 COMPUTATION PRINCIPLE 96 3.4.2
VOLUME BACKSCATTERING 98 3.4.3 SURFACE BACKSCATTERING 101 3.5 REFLECTION
AND SCATTERING BY A ROUGH SURFACE 103 3.5.1 ROUGHNESS AND SCATTERING 103
3.5.2 COHERENT REFLECTION 105 3.5.3 BACKSCATTERED FIELD 107 3.6
REFLECTION AND SCATTERING AT OCEAN BOUNDARIES 112 3.6.1 REFLECTION AND
SCATTERING AT THE SEA SURFACE 112 3.6.2 THE SEAFLOOR 114 NOISE AND
SIGNAL FLUCTUATIONS 123 4.1 NARROW-BAND AND WIDE-BAND NOISE 124 4.2
UNDERWATER ACOUSTIC NOISE 128 4.2.1 AMBIENT NOISE 128 4.2.2
SHIP-RADIATED NOISE 137 4.2.3 SELF-NOISE 143 4.2.4 INTERFERENCE AND
ACOUSTIC COMPATIBILITY 145 4.3 TWO APPROACHES TO NOISE MODELING 146
4.3.1 NOISE COHERENCE 146 4.3.2 SPATIAL MODEL OF NOISE AVERAGE INTENSITY
149 4.4 REVERBERATION 151 4.4.1 THE CONCEPT OF REVERBERATION 151 4.4.2
REVERBERATION MODELING 152 4.4.3 CONSEQUENCES OF REVERBERATION 153 4.5
UNDERWATER ACOUSTIC NOISE REDUCTION 154 4.6 ENVIRONMENT VARIABILITY AND
SIGNAL FLUCTUATIONS 156 4.6.1 VARIATIONS IN THE PROPAGATION MEDIUM 156
4.6.2 NATURE OF SIGNAL FLUCTUATIONS 158 4.6. VIII CONTENTS 5.1.4
TRANSDUCER MODELING AND DESIGN 178 5.1.5 TRANSDUCER INSTALLATION 179 5.2
TRANSDUCER CHARACTERISTICS 183 5.2.1 FREQUENCY BANDWIDTH 183 5.2.2
ELECTRICAL IMPEDANCE 184 5.2.3 SENSITIVITY IN TRANSMISSION AND RECEPTION
185 5.2.4 EFFICIENCY 186 5.2.5 UNDERWATER ACOUSTIC TRANSDUCER
MEASUREMENTS 187 5.3 THE SONAR TRANSMITTER 188 5.3.1 TRANSMISSION LINE
DESCRIPTION 188 5.3.2 SONAR AMPLIFIER TECHNOLOGY 189 5.3.3
IMPEDANCE-MATCHING UNIT 191 5.3.4 TRANSMISSION LINE OVERALL STRUCTURE
191 5.3.5 SOURCE LEVEL 192 5.3.6 MAXIMUM TRANSMISSION LEVEL - CAVITATION
193 5.4 TRANSDUCER AND ARRAY DIRECTIVITY 194 5.4.1 NOTION OF DIRECTIVITY
194 5.4.2 NEAR FIELD AND FAR FIELD 198 5.4.3 THEORETICAL RESULTS FOR
SIMPLE-GEOMETRY ANTENNAS 200 5.4.4 COMBINING DIRECTIVITY PATTERNS 203
5.4.5 DIRECTIVITY OF WIDE-BAND SIGNALS 204 5.4.6 BEAMFORMING 207 5.4.7
ARRAY FOCUSING 215 5.4.8 INTERFEROMETRY 216 5.4.9 ADVANCED GONIOMETRIE
DETECTION 221 5.4.10 HIGH-RESOLUTION METHODS VS. BEAMFORMING 223 SONAR
SIGNAL PROCESSING - PRINCIPLES AND PERFORMANCE 225 6.1 INTRODUCTION 225
6.2 PRELIMINARY NOTIONS 226 6.2.1 SIGNAL DESIGN 226 6.2.2
SIGNAL-TO-NOISE RATIO (SNR) 234 6.3 PASSIVE SONAR SIGNAL PROCESSING 237
6.3.1 NON-COHERENT DETECTION 237 6.3.2 BROADBAND DETECTION PERFORMANCE
238 6.3.3 NARROWBAND DETECTION PERFORMANCE 239 6.3. CONTENTS IX 6.5.3
SIGNAL DEMODULATION 253 6.5.4 MATCHED FILTERING 254 6.6 SONAR SYSTEM
PERFORMANCE 255 6.6.1 THE SONAR EQUATION 255 6.6.2 NOTES ABOUT THE
RECEPTION THRESHOLD 256 6.6.3 PERFORMANCE IN DETECTION 257 6.6.4
PERFORMANCE OF UNDERWATER ACOUSTIC COMMUNICATION SYSTEMS . 263 6.6.5
PARAMETER ESTIMATION ERRORS 267 7 WATER COLUMN APPLICATIONS 271 7.1
NAVIGATION 271 7.1.1 ACOUSTIC BEACONS 271 7.1.2 ECHOSOUNDING 273 7.1.3
SPEED MEASUREMENTS 275 7.1.4 OBSTACLE AVOIDANCE 276 7.2 MILITARY
APPLICATIONS 277 7.2.1 AN HISTORICAL PERSPECTIVE: ASDIC SYSTEMS 277
7.2.2 PASSIVE SONARS 278 7.2.3 ACTIVE SONARS 285 7.3 FISHERY ACOUSTICS
291 7.3.1 FISHERY SOUNDERS 291 7.3.2 PANORAMIC SONARS 294 7.3.3 OTHER
ACOUSTIC EQUIPMENT OF FISHING VESSELS 295 7.3.4 FISHERY MULTIBEAM
ECHOSOUNDERS 295 7.3.5 SCIENTIFIC APPLICATIONS OF FISHERY SONARS 297 7.4
PHYSICAL OCEANOGRAPHY 299 7.4.1 DOPPLER CURRENT PROFILERS 299 7.4.2
OCEAN ACOUSTIC TOMOGRAPHY 308 7.4.3 GLOBAL ACOUSTICS 311 7.4.4 OTHER
APPLICATIONS OF SOFAR PROPAGATION 313 7.5 UNDERWATER INTERVENTION 313
7.5.1 ACOUSTIC POSITIONING 313 7.5.2 UNDERWATER ACOUSTIC COMMUNICATION
316 8 SEAFLOOR-MAPPING SONAR SYSTEMS 323 8.1 SINGLE-BEAM SOUNDERS 324
8.1.1 OVERVIEW 324 8.1.2 PERFORMANCE AND LIMITATIONS OF SINGLE-BEAM
SOUNDERS 328 8. X CONTENTS 8.3.3 BATHYMETRY MEASUREMENTS 357 8.3.4 SONAR
IMAGING WITH MULTIBEAM SOUNDERS 362 8.3.5 PERFORMANCE OF MULTIBEAM
SOUNDERS 363 9 SUB-BOTTOM INVESTIGATION 371 9.1 SEDIMENT PROFILERS 372
9.1.1 OVERVIEW 373 9.1.2 SEDIMENT PROFILER PERFORMANCES 376 9.1.3 ECHO
FORMATION AND CONSEQUENCES 378 9.1.4 THREE ORIGINAL CONCEPTS OF SEDIMENT
PROFILERS 379 9.2 MARINE SEISMIC EXPLORATION 383 9.2.1 GENERAL
PRINCIPLES 383 9.2.2 MARINE SEISMIC TECHNOLOGY 386 9.3 REFLECTION
SEISMIC SURVEYS 393 9.3.1 ACQUISITION CONFIGURATION 394 9.3.2 PHYSICAL
CONTEXT: PROPAGATION AND REFLECTION PHENOMENA . . . 399 9.4 SEISMIC
PROCESSING PRINCIPLES 407 9.4.1 SEISMIC PROCESSING OVERVIEW 407 9.4.2
RECORDED SIGNAL 409 9.4.3 PREPROCESSING 409 9.4.4 VELOCITY ANALYSES, NMO
AND STACK 411 9.4.5 MIGRATION 417 9.4.6 AMPLITUDE PROCESSING 421 9.5
SEISMIC VS. SONAR INVESTIGATION 422 10 MARINE ANIMAL ACOUSTICS 425 10.1
MARINE MAMMAL BIOACOUSTICS 425 SOUND RECEPTION 426 HEARING PERFORMANCE
430 SOUNDS PRODUCED BY TOOTHED WHALES 436 SOUND GENERATION MECHANISMS OF
TOOTHED WHALES 438 SOUNDS PRODUCED BY BALEEN WHALES 439 SOUND PRODUCTION
MECHANISMS OF BALEEN WHALES 441 SOUNDS PRODUCED BY PINNIPEDS 441 SOUND
PRODUCTION MECHANISMS OF PINNIPEDS 443 SOUNDS PRODUCED BY MANATEES AND
DUGONGS 444 10. CONTENTS XI 10.5 ACOUSTIC POLLUTION OF THE OCEAN 453
10.5.1 OVERVIEW 453 10.5.2 SOUND-MEDIATED INJURY TO ANIMALS 454 10.5.3
OTHER PHYSIOLOGICAL AND BEHAVIORAL EFFECTS OF NOISE 455 ON ANIMALS
10.5.4 EFFECTS OF HIGH-POWERED SONAR ON ANIMALS 456 10.5.5 EFFECTS OF
AIRGUNS ON MARINE ANIMALS 460 10.5.6 ACOUSTIC DETERRENT DEVICES 463
10.5.7 EFFECTS OF OTHER ACTIVE ACOUSTIC DEVICES ON ANIMALS 465 10.5.8
EFFECTS OF INCIDENTAL SOURCES AND AMBIENT NOISE ON 466 MARINE ANIMALS
10.5.9 THE CHALLENGE OF UNDERSTANDING AND REGULATING NOISE 468 POLLUTION
10.5.10 MITIGATING NEGATIVE IMPACTS OF ANTHROPOGENIC SOUND 470 10.6
SUMMARY 472 11 CONCLUSION 475 11.1 SYNTHESIS 475 11.1.1 PROPAGATION 475
11.1.2 REFLECTION AND BACKSCATTERING 476 11.1.3 NOISE AND FLUCTUATIONS
477 1 1.1.4 TRANSDUCERS AND ARRAY PROCESSING 478 11.1.5 SIGNAL
PROCESSING 479 11.1.6 MARINE LIFE AND ACOUSTICS 480 11.2 CURRENT TRENDS
AND PERSPECTIVES 481 11.2.1 A MAJOR TOOL FOR MONITORING AND EXPLOITATION
OF 481 THE EARTH 11.2.2 UNDERWATER ACOUSTICS IN PERSPECTIVE 482
APPENDICES 487 A. 1. 1 THE UNITS OF UNDERWATER ACOUSTICS 487 A. 1.2
BASIC LOGARITHMIC FORMULAS 490 A.1.3 THE CARDINAL SINE FUNCTION 491
A.2.1 THE AVERAGE INTENSITY MODEL 492 A.2. XII CONTENTS A.5.4
DIRECTIVITY PATTERN OF A LINE ARRAY 521 A.5.5 DIRECTIVITY PATTERN OF A
CURVED ARRAY 524 A.5.6 ARRAY SHADING PERFORMANCE 525 A.5.7
INTERFEROMETRY 527 A.5.8 HIGH-RESOLUTION METHODS IN ARRAY PROCESSING 530
A.6.1 FOURIER TRANSFORM: MAIN PROPERTIES 535 A.6.2 ANALOGUE RECEIVERS
FOR NARROW-BAND PULSES AND PROCESSING GAIN 536 A.7.1 CHANNEL CAPACITY
FOR DIGITAL TRANSMISSIONS 537 A.8.1 CONTRAST OF SEAFLOOR SONAR IMAGES
539 A.9.1 SEISMIC WAVE PROPAGATION 540 A. 10.1 SOUNDS PRODUCED BY MARINE
MAMMALS 546 A. 10.2 EXAMPLES OF SOUNDS PRODUCED BY FISHES 560 THE SONAR
EQUATIONS 563 EXERCISES AND PROBLEMS 571 NUMERICAL RESULTS 593
REFERENCES 605 INDEX 669
|
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author | Lurton, Xavier |
author_facet | Lurton, Xavier |
author_role | aut |
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bvnumber | BV036715106 |
classification_rvk | RB 10408 UF 6200 |
ctrlnum | (OCoLC)695702835 (DE-599)DNB988750287 |
dewey-full | 620.25 534.23 |
dewey-hundreds | 600 - Technology (Applied sciences) 500 - Natural sciences and mathematics |
dewey-ones | 620 - Engineering and allied operations 534 - Sound and related vibrations |
dewey-raw | 620.25 534.23 |
dewey-search | 620.25 534.23 |
dewey-sort | 3620.25 |
dewey-tens | 620 - Engineering and allied operations 530 - Physics |
discipline | Maschinenbau / Maschinenwesen Physik Geologie / Paläontologie Biologie Geographie |
edition | Second edition |
format | Book |
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id | DE-604.BV036715106 |
illustrated | Illustrated |
indexdate | 2024-07-09T22:46:26Z |
institution | BVB |
isbn | 9783540784807 9783662499696 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020633105 |
oclc_num | 695702835 |
open_access_boolean | |
owner | DE-11 DE-92 DE-83 DE-Aug4 DE-706 DE-634 |
owner_facet | DE-11 DE-92 DE-83 DE-Aug4 DE-706 DE-634 |
physical | xxxvi, 680 Seiten Illustrationen, Diagramme |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Springer Praxis Publishing |
record_format | marc |
series2 | Springer Praxis books in geophysical sciences |
spelling | Lurton, Xavier Verfasser aut An introduction to underwater acoustics principles and applications Xavier Lurton Second edition Berlin ; Heidelberg Springer [2010] Chichester, UK Praxis Publishing xxxvi, 680 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Springer Praxis books in geophysical sciences Hier auch später erschienene, unveränderte Nachdrucke Hydroakustik (DE-588)4259255-0 gnd rswk-swf Hydroakustik (DE-588)4259255-0 s DE-604 Erscheint auch als Online-Ausgabe, eBook 978-3-642-13835-5 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020633105&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Lurton, Xavier An introduction to underwater acoustics principles and applications Hydroakustik (DE-588)4259255-0 gnd |
subject_GND | (DE-588)4259255-0 |
title | An introduction to underwater acoustics principles and applications |
title_auth | An introduction to underwater acoustics principles and applications |
title_exact_search | An introduction to underwater acoustics principles and applications |
title_full | An introduction to underwater acoustics principles and applications Xavier Lurton |
title_fullStr | An introduction to underwater acoustics principles and applications Xavier Lurton |
title_full_unstemmed | An introduction to underwater acoustics principles and applications Xavier Lurton |
title_short | An introduction to underwater acoustics |
title_sort | an introduction to underwater acoustics principles and applications |
title_sub | principles and applications |
topic | Hydroakustik (DE-588)4259255-0 gnd |
topic_facet | Hydroakustik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020633105&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT lurtonxavier anintroductiontounderwateracousticsprinciplesandapplications |