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110927s2012 gw a ob 000 0 eng d |
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|a QE539.2.D36
|b I46 2012eb
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072 |
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|a NAT
|x 009000
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|a 551.2201/13
|2 23
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|a UAMI
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245 |
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|a Imaging, modeling and assimilation in seismology /
|c edited by Yong-Gang Li.
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260 |
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|a Berlin ;
|a Boston :
|b De Gruyter,
|c ©2012.
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300 |
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|a 1 online resource (x, 262 pages) :
|b illustrations (some color)
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336 |
|
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|a text
|b txt
|2 rdacontent
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337 |
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
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347 |
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|a data file
|2 rda
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|a Includes bibliographical references.
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505 |
0 |
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|a Imaging, Modeling and Assimilation in Seismology: An Overview; References; Chapter 1 Full-Wave Seismic Data Assimilation: A Unified Methodology for Seismic Waveform Inversion; 1.1 Introduction; 1.2 Generalized Inverse; 1.2.1 Prior Probability Densities; 1.2.2 Bayes' Theorem; 1.2.3 Euler-Lagrange Equations; 1.3 Data Functionals; 1.3.1 Differential Waveforms; 1.3.2 Cross-correlation Measurements; 1.3.3 Generalized Seismological Data Functionals (GSDF); 1.4 The Adjoint Method; 1.4.1 An Example of Adjoint Travel-Time Tomography; 1.4.2 Review of Some Recent Adjoint Waveform Tomography.
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505 |
8 |
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|a 1.5 The Scattering-Integral (SI) Method1.5.1 Full-Wave Tomography Based on SI; 1.5.2 Earthquake Source Parameter Inversion Based on SI; 1.6 Discussion; 1.6.1 Computational Challenges; 1.6.2 Nonlinearity; 1.7 Summary; References; Chapter 2 One-Return Propagators and the Applications in Modeling and Imaging; 2.1 Introduction; 2.2 Primary-Only Modeling and One-Return Approximation; 2.3 Elastic One-Return Modeling; 2.3.1 Local Born Approximation; 2.3.2 The Thin Slab Approximation; 2.3.3 Small-Angle Approximation and the Screen Propagator; 2.3.4 Numerical Implementation.
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505 |
8 |
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|a 2.3.5 Elastic, Acoustic and Scalar Cases2.4 Applications of One-Return Propagators in Modeling, Imaging and Inversion; 2.4.1 Applications to Modeling; 2.4.2 One-Return Propagators Used in Migration Imaging; 2.4.3 Calculate Finite-Frequency Sensitivity Kernels Used in Velocity Inversion; 2.5 Other Development of One-Return Modeling; 2.5.1 Super-Wide Angle One-Way Propagator; 2.5.2 One-Way Boundary Element Method; 2.6 Conclusion; References; Chapter 3 Fault-Zone Trapped Waves: High-Resolution Characterization of the Damage Zone of the Parkfield San Andreas Fault at Depth; 3.1 Introduction.
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505 |
8 |
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|a 3.2 Fault-Zone Trapped Waves at the SAFOD Site3.2.1 The SAFOD Surface Array; 3.2.2 The SAFOD Borehole Seismographs; 3.2.3 Finite-Difference Simulation of Fault-Zone Trapped Waves at SAFOD Site; 3.3 Fault-Zone Trapped Waves at the Surface Array near Parkfield Town; 3.4 Conclusion and Discussion; Acknowledgements; References; Appendix: Modeling Fault-Zone Trapped SH-Love Waves; Chapter 4 Fault-Zone Trapped Waves at a Dip Fault: Documentation of Rock Damage on the Thrusting Longmen-Shan Fault Ruptured in the 2008 M8 Wenchuan Earthquake; 4.1 Geological Setting and Scientific Significance.
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505 |
8 |
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|a 4.2 Data and Results4.2.1 Data Collection; 4.2.2 Examples of Waveform Data; 4.3 3-D Finite-Difference Investigations of Trapping Efficiency at the Dipping Fault; 4.3.1 Effect of Fault-Zone Dip Angle; 4.3.2 Effect of Epicentral Distance; 4.3.3 Effect of Source Depth; 4.3.4 Effect of Source away from Vertical and Dip Fault Zones; 4.3.5 Effect of Fault-Zone Width and Velocity Reduction; 4.4 3-D Finite-Difference Simulations of FZTWs at the South Longmen-Shan Fault; 4.5 Fault Rock Co-Seismic Damage and Post-Mainshock Heal; 4.6 Conclusion and Discussion; Acknowledgements; References; Appendix.
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520 |
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|a This work presents current approaches in geophysical research of earthquakes. A global authorship from top institutions presents case studies to model, measure, andmonitor earthquakes. Among others afull-3D waveform tomography method is introduced, as well as propagator methods for modeling and imaging. In particular the earthquake prediction method makes this book a must-read for researchers in the field.
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546 |
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|a English.
|
590 |
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|a Knovel
|b ACADEMIC - Oil & Gas Engineering
|
590 |
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|a Knovel
|b ACADEMIC - Earth Sciences
|
650 |
|
0 |
|a Seismology
|x Data processing.
|
650 |
|
0 |
|a Seismology
|x Mathematical models.
|
650 |
|
6 |
|a Sismologie
|x Informatique.
|
650 |
|
6 |
|a Sismologie
|x Modèles mathématiques.
|
650 |
|
7 |
|a NATURE
|x Earthquakes & Volcanoes.
|2 bisacsh
|
650 |
|
7 |
|a SCIENCE
|x Earth Sciences
|x Seismology & Volcanism.
|2 bisacsh
|
650 |
|
7 |
|a Seismology
|x Data processing.
|2 fast
|0 (OCoLC)fst01111310
|
650 |
|
7 |
|a Seismology
|x Mathematical models.
|2 fast
|0 (OCoLC)fst01111316
|
700 |
1 |
|
|a Li, Yong-Gang.
|
776 |
0 |
8 |
|i Print version:
|t Imaging, modeling and assimilation in seismology.
|d Berlin ; Boston : De Gruyter, ©2012
|w (DLC) 2011035607
|
856 |
4 |
0 |
|u https://appknovel.uam.elogim.com/kn/resources/kpIMAS0002/toc
|z Texto completo
|
938 |
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|a Askews and Holts Library Services
|b ASKH
|n AH28649828
|
938 |
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|a De Gruyter
|b DEGR
|n 9783110259032
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938 |
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|b EBLB
|n EBL887116
|
938 |
|
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|a ebrary
|b EBRY
|n ebr10554708
|
938 |
|
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|a EBSCOhost
|b EBSC
|n 448066
|
938 |
|
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|a ProQuest MyiLibrary Digital eBook Collection
|b IDEB
|n 362666
|
938 |
|
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|a YBP Library Services
|b YANK
|n 7237126
|
994 |
|
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|a 92
|b IZTAP
|