Seismic modelling of earth structure:
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Bologna
Ed. Compositori
1996
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | IX, 572 S. graph. Darst., Kt. |
ISBN: | 8877940808 |
Internformat
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245 | 1 | 0 | |a Seismic modelling of earth structure |c Istituto Nazionale di Geofisica. Ed. by Enzo Boschi ... |
264 | 1 | |a Bologna |b Ed. Compositori |c 1996 | |
300 | |a IX, 572 S. |b graph. Darst., Kt. | ||
336 | |b txt |2 rdacontent | ||
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650 | 4 | |a Deep continental structure | |
650 | 4 | |a Seismic profiling - Mathematical models | |
650 | 4 | |a Mathematisches Modell | |
650 | 4 | |a Seismic tomography | |
650 | 4 | |a Seismic waves | |
650 | 0 | 7 | |a Seismologie |0 (DE-588)4379341-1 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Seismik |0 (DE-588)4180758-3 |2 gnd |9 rswk-swf |
651 | 4 | |a Earth |x Internal structure |x Mathematical models | |
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Datensatz im Suchindex
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adam_text | ISTITUTO NAZIONALE DI GEOFISICA SEISMIC MODELLING OF EARTH STRUCTURE
EDITED BY ENZO BOSCHI, GORAN EKSTROM AND ANDREA MORELLI M I M EDITRICE
COMPOSITORI CONTENTS PREFACE - ENZO BOSCHI, GORAN EKSTROM AND ANDREA
MORELLI IX 1 A GENERAL VIEW ON THE SEISMIC INVERSE PROBLEM - GUUST NOLET
1.1 INTRODUCTION 1 1.1.1 ARRIVAL TIMES 1 1.1.2 WAVEFORMS 3 1.2 AN
ALGEBRAIC FRAMEWORK 4 1.2.1 NONLINEAR WAVEFORM INVERSIONS 6 1.2.2
ADJOINT METHODS 12 1.3 DATA ERRORS 13 1.3.1 DELAY TIME ERRORS 13 1.3.2
ERRORS IN WAVEFORMS 14 1.4 THE ROLE OF THE (GENERALIZED) NULLSPACE 15
1.5 CHOOSING A PREFERRED SOLUTION 17 1.6 HOW SENSITIVE ARE SEISMIC DATA
TO EARTH STRUCTURE? 19 1.6.1 RAY WIDTH 19 1.6.2 FULL WAVEFORMS 20 1.7
CONCLUSIONS 27 LONG PERIOD SEISMOLOGY AND THE EARTH S FREE OSCILLATIONS
- ]OHN H. WOODHOUSE 2.1 INTRODUCTION 31 2.2 EQUATIONS OF LINEAR
ELASTICITY WITH GRAVITATION AND INITIAL STRESS 32 2.3 OSCILLATIONS OF A
SPHERICALLY SYMMETRIC EARTH MODEL 37 2.4 GENERAL CHARACTERISTICS OF
MODAL MULTIPLETS 45 2.5 SOME ASYMPTOTIC PROPERTIES OF FREE OSCILLATIONS
55 2.6 OSCILLATIONS OF AN ASPHERICAL EARTH MODEL 57 3 SURFACE WAVES ON A
GLOBAL SCALE - INFLUENCE OF ANISOTROPY AND ANELASTICITY - JEAN- PAUL
MONTAGNER 3.1 INTRODUCTION 81 3.2 AN ANISOTROPIC EARTH 82 3.2.1 SEISMIC
ANISOTROPY AT ALL SCALES 82 3.2.2 FIRST ORDER PERTURBATION THEORY -
OPERATOR FORMALISM 85 3.2.3 STATIONARY AND NON-DEGENERATE CASE 87 3.2.4
TIME DEPENDENCE 90 3.2.5 PLANE CASE 95 3.2.6 SPHERICAL CASE 105 IV
CONTENTS 3.3 TOMOGRAPHY OF ANISOTROPY 110 3.3.1 FORWARD PROBLEM 110
3.3.2 INVERSE PROBLEM 114 3.3.3 PRACTICAL IMPLEMENTATION 118 3.3.4
GEOPHYSICAL APPLICATIONS 118 3.4 AN ANELASTIC EARTH 123 3.4.1
THEORETICAL BACKGROUND 123 3.4.2 MEASUREMENTS OF ATTENUATION USING
SURFACE WAVES 127 3.4.3 FUTURE DEVELOPMENTS 130 3.5 CONCLUSIONS 131 4
SURFACE WAVE INVERSIONS ON A REGIONAL SCALE - ROEL SNIEDER 4.1
INTRODUCTION 149 4.2 BASIC EQUATIONS 149 4.3 CASE 1, SMOOTH
PERTURBATIONS 153 4.4 CASE 2, SMOOTH AND WEAK PERTURBATIONS 155 4.4.1
DERIVATION OF THE BASIC EQUATIONS 155 4.4.2 SURFACE WAVE INVERSIONS
BASED ON DISPERSION MEASUREMENTS 157 4.4.3 MAPPING THE LOCAL PHASE
VELOCITY TO A PERTURBATION WITH DEPTH 160 4.4.4 APPLICATION TO WAVEFORM
INVERSIONS 163 4.4.5 MODE COUPLING, PRESENTATION OF A PARADOX 164 4.5
CASE 3, WEAK PERTURBATIONS 166 4.5.1 THE BORN APPROXIMATION FOR SURFACE
WAVES 167 4.5.2 APPLICATION TO WAVEFORM INVERSION 169 4.6 REGIONAL AND
GLOBAL INVERSIONS 173 5 CONSTRUCTION OF SYNTHETICS FOR 2D STRUCTURES;
CORE PHASES - DON V. HELMBERGER, LIAN-SHE ZHAO AND ED GARNERO 5.1
INTRODUCTION 183 5.2 REVIEW OF GRT THEORY AND LOCAL STRETCHING 188 5.3
D STRUCTURE AND LOWER MANTLE TRIPLICATIONS 193 5.4 MODELING OUTER-CORE
PHASES 199 5.4.1 D HETEROGENEITY AND EFFECTS ON SKS, SKKS ... (SMKS)
207 5.4.2 MODELING SP D KS 212 5.5 DISCUSSION AND CONCLUSIONS 220 6
SEISMIC RAY TRACING - JEAN VIRIEUX 6.1 INTRODUCTION 223 6.2 WAVE
PROPAGATION 228 6.3 HOW TO SOLVE WAVE EQUATIONS 233 6.3.1 SPACE METHODS
233 6.3.2 SPECTRAL METHODS 234 6.3.3 ASYMPTOTIC METHODS 234 6.4 SCALAR
HIGH FREQUENCY APPROXIMATION 234 6.4.1 ANSATZ OF THE RAY THEORY 235
6.4.2 EIKONAL EQUATION 239 6.4.3 TRANSPORT EQUATION 246 CONTENTS 6.5
ANALYTICAL EXAMPLES OF RAY TRACING 255 6.5.1 HOMOGENEOUS MEDIA 255 6.5.2
CONSTANT GRADIENT OF THE VELOCITY 255 6.5.3 CONSTANT GRADIENT OF THE
SQUARE OF THE SLOWNESS 258 6.6 ARBITRARY VARIATION ALONG ONE DIRECTION
260 6.6.1 RAY TRACING AS QUADRATURE EQUATIONS 260 6.6.2 TRIPLICATION AND
SHADOW ZONES 265 6.7 VARIATIONAL APPROACH 266 6.7.1 EULER EQUATIONS 266
6.7.2 LAGRANGIAN FORMULATION 267 6.7.3 HAMILTONIAN FORMULATION 268 6.8
VALIDITY OF THE RAY THEORY 268 6.8.1 VALIDITY OF THE ASYMPTOTIC APPROACH
269 6.8.2 CLASSIFICATION 269 6.9 RAY TRACING IN HETEROGENEOUS MEDIA 274
6.9.1 SETTING UP RAY TRACING EQUATIONS 274 6.9.2 HOW TO SOLVE THESE
ORDINARY DIFFERENTIAL EQUATIONS 277 6.10 PARAXIAL THEORY OR
LINEARIZATION OF RAY TRACING 278 6.10.1 PARAXIAL RAYS 278 6.10.2 BEAMS
OF RAYS 283 6.11 VECTOR HIGH FREQUENCY APPROXIMATION 285 6.12 INTERFACES
290 6.12.1 DISCONTINUITY OF FIRST ORDER 290 6.12.2 BOUNDARY CONDITIONS
FOR PARAXIAL RAYS 292 6.12.3 TOPOLOGY BETWEEN INTERFACES AND SURROUNDING
MEDIA 294 6.13 SYNTHETIC SEISMOGRAMS 295 6.13.1 DIFFICULTIES OF RAY
SEISMOGRAMS 295 6.13.2 WKBJ SEISMOGRAMS 295 6.13.3 GAUSSIAN BEAM
SUMMATION 299 6.14 CONCLUSIONS 300 7 PORTABLE BROADBAND SEISMOLOGY:
RESULTS FROM AN EXPERIMENT IN NEW ZEALAND - DAVID GUBBINS 7.1
INSTRUMENTATION, DEPLOYMENT, AND DATABASE 305 7.1.1 MODERN FIELD
SEISMOLOGY 305 7.1.2 INSTRUMENTATION 306 7.1.3 THE LEEDS TARARUA ARRAY,
NEW ZEALAND 310 7.1.4 THE DATABASE 316 7.2 PRECURSIVE PHASES TRAVELLING
IN THE SUBDUCTED PLATE 321 7.2.1 BACKGROUND 321 7.2.2 TRAVEL TIMES 327
7.2.3 POLARISATION OF THE P WAVE PRECURSOR 335 7.2.3.1 USE OF THE
POLARIZATION INFORMATION TO INFER VELOCITY STRUC- TURE 337 7.2.3.2
MODELS DERIVED FROM POLARIZATION INFORMATION 342 7.2.3.3 TRAVEL TIMES
345 7.2.3.4 POLARIZATION ANALYSIS OF THE 1 HZ ARRIVAL 347 VI CONTENTS
7.2A DISPERSION OF THE P WAVE PRECURSOR 348 7.2.4.1 METHOD FOR MEASURING
DISPERSION 349 7.2.4.2 OBSERVED DISPERSION 350 7.2.4.3 MODELLING THE
PRECURSORS 351 7.3 CONVERTED PHASES FROM THE TOP OF THE PLATE 354 7.3.1
THE X PHASE 354 7.3.2 TRAVEL TIMES AND TRANSMISSION COEFFICIENTS 357
7.3.3 METHOD OF TRAVEL TIME INVERSION 361 7.3.4 RESULTS 365 7.4 SHEAR
WAVE SPLITTING AND ANISOTROPY 367 7.4.1 SPLITTING OF SHEAR WAVES 367
7.4.2 DETECTING AND MEASURING ANISOTROPY 369 7.4.3 SPLIT SCS 371 7.4.4
SKS SPLITTING 377 7.5 EARTHQUAKE SOURCE MECHANISMS 384 7.5.1
INTRODUCTION 384 7.5.2 EVENT SELECTION 385 7.5.3 APPLICATION OF THE
WAVEFORM METHOD 388 7.5.4 RESULTS 389 7.5.5 DISCUSSION 389 7.6
CONCLUSIONS 393 THE STRUCTURE OF THE LOWERMOST MANTLE AS DETERMINED FROM
USING SEISMIC ARRAYS - MICHAEL WEBER, J. PETER DAVIS, CHRISTINE THOMAS,
FRANK KRIIGER, FRANK SCHERBAUM, JORG SCHLITTENHARDT AND MARTIN KORNIG
8.1 INTRODUCTION 399 8.2 HISTORY 401 8.3 SEISMIC PHASES 404 8.4
OBSERVATIONS 405 8.4.1 P 405 8.4.2 P DIF 406 8.4.3 PDP 409 8.4.3.1
GRF-DATA 409 8.4.3.2 GRSN-DATA 414 8.4.3.3 DOUBLE BEAM METHOD (DBM) 418
8.4.3.4 WHERE ELSE? 425 8.5 FORWARD MODELLING 428 8.5.1 ID MODELS 428
8.5.2 2D/3D MODELS 431 8.6 CONCLUSIONS 435 SEISMIC TOMOGRAPHY AND
MINERAL PHYSICS - GIORGIO RANALLI 9.1 INTRODUCTION 443 9.2 MINERALOGICAL
COMPOSITION OF THE MANTLE 444 9.3 DENSITY AND ELASTIC PARAMETERS OF
MANTLE PHASES 447 9.4 THERMAL PARAMETERS OF MANTLE PHASES 449 CONTENTS
VII 9.5 VELOCITY - TEMPERATURE - DENSITY RELATIONS 454 9.6 GEODYNAMIC
CONSIDERATIONS 458 10 COMBINED RESULTS FROM MINERAL PHYSICS, TOMOGRAPHY
AND MANTLE CONVECTION AND THEIR IMPLICATIONS ON GLOBAL GEODYNAMICS -
DAVID A. YUEN, ONDREJ CADEK, PETER VAN KEKEN, DAVID M. REUTELER, HANA
KYVALOVA AND BRIGID A. SCHROEDER 10.1 INTRODUCTION 463 10.2 CONVERSION
OF SEISMIC TO THERMAL ANOMALIES IN THE LOWER MANTLE 464 10.3 MANTLE
FLUSH DYNAMICS 475 10.4 FORMATION OF MEGAPLUMES IN THE LOWER MANTLE 486
10.4.1 DYNAMICAL EFFECTS FROM LOWER-MANTLE VISCOSITY PARAMETERIZED
ACCORD- ING TO MELTING CURVES 486 10.4.2 EFFECTS OF A VISCOSITY MAXIMUM
IN THE LOWER MANTLE VISCOSITY ON MAN- TLE CIRCULATIONS WITH TWO PHASE
TRANSITIONS 490 10.4.3 MEGAPLUME DYNAMICS AND THE CONSEQUENCE ON
BACKWARD FLUSH INSTA- BILITY AND SLAB RETROGRADE MOTIONS 496 10.5
CONCLUDING REMARKS AND OUTLOOK 499 11 EARTH S MANTLE IN THREE DIMENSIONS
- ADAM M. DZIEWONSKI 11.1 INTRODUCTION 507 11.2 THE DATA TYPES AND
MODELING APPROACHES 511 11.3 SPECTRUM OF HETEROGENEITY 517 11.3.1 THE
GLOBAL SPECTRUM OF SS RESIDUALS 518 11.3.2 SYNTHETIC TESTS 521 11.3.3
OTHER OBSERVATIONS AND GEODYNAMIC FUNCTIONS 524 11.4 3D EARTH MODELS 528
11.4.1 MODEL REPRESENTATION 530 11.4.2 PERTURBATION THEORY 531 11.4.2.1
TRAVEL TIMES 531 11.4.2.2 WAVEFORMS 532 11.4.3 INVERSION 536 11.4.4
EXAMPLE OF APPLICATION: MODEL S12/WM13 OF SU ET AL, 1994 538 11.4.4.1
VELOCITY MAPS 539 11.4.4.2 CROSS-SECTIONS 541 11.4.4.3 THREE-DIMENSIONAL
VIEW OF THE MODEL 546 11.4.4.4 DISCUSSION OF MODEL S12/WM13 548 11.5
OTHER DEVELOPMENTS 553 11.5.1 SHORT PERIOD SURFACE WAVES 553 11.5.2
RECENT INVERSIONS FOR P- AND S-VELOCITIES 556 11.5.3 JOINT INVERSIONS OF
P- AND S-WAVE SENSITIVE DATA 559 11.5.4 ANISOTROPY OF THE INNER CORE 560
11.5.5 OTHER ISSUES 564
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geographic | Earth Internal structure Mathematical models |
geographic_facet | Earth Internal structure Mathematical models |
id | DE-604.BV011229410 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:06:11Z |
institution | BVB |
isbn | 8877940808 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-007535240 |
oclc_num | 35761322 |
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physical | IX, 572 S. graph. Darst., Kt. |
publishDate | 1996 |
publishDateSearch | 1996 |
publishDateSort | 1996 |
publisher | Ed. Compositori |
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spelling | Seismic modelling of earth structure Istituto Nazionale di Geofisica. Ed. by Enzo Boschi ... Bologna Ed. Compositori 1996 IX, 572 S. graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Deep continental structure Seismic profiling - Mathematical models Mathematisches Modell Seismic tomography Seismic waves Seismologie (DE-588)4379341-1 gnd rswk-swf Seismik (DE-588)4180758-3 gnd rswk-swf Earth Internal structure Mathematical models Seismologie (DE-588)4379341-1 s DE-604 Seismik (DE-588)4180758-3 s Boschi, Enzo Sonstige oth GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007535240&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Seismic modelling of earth structure Deep continental structure Seismic profiling - Mathematical models Mathematisches Modell Seismic tomography Seismic waves Seismologie (DE-588)4379341-1 gnd Seismik (DE-588)4180758-3 gnd |
subject_GND | (DE-588)4379341-1 (DE-588)4180758-3 |
title | Seismic modelling of earth structure |
title_auth | Seismic modelling of earth structure |
title_exact_search | Seismic modelling of earth structure |
title_full | Seismic modelling of earth structure Istituto Nazionale di Geofisica. Ed. by Enzo Boschi ... |
title_fullStr | Seismic modelling of earth structure Istituto Nazionale di Geofisica. Ed. by Enzo Boschi ... |
title_full_unstemmed | Seismic modelling of earth structure Istituto Nazionale di Geofisica. Ed. by Enzo Boschi ... |
title_short | Seismic modelling of earth structure |
title_sort | seismic modelling of earth structure |
topic | Deep continental structure Seismic profiling - Mathematical models Mathematisches Modell Seismic tomography Seismic waves Seismologie (DE-588)4379341-1 gnd Seismik (DE-588)4180758-3 gnd |
topic_facet | Deep continental structure Seismic profiling - Mathematical models Mathematisches Modell Seismic tomography Seismic waves Seismologie Seismik Earth Internal structure Mathematical models |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007535240&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT boschienzo seismicmodellingofearthstructure |