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Presenting current approaches in observational and computational
seismology, this book introduces advanced methods and techniques by
means of case studies in earthquake research. Among others these
include solving inverse seismologic problems, tomography for
structure imaging, characterizing fault damage and healing,
seismicity analysis for determining pre-shock moment release, and
coupled solid-fluid models.
This monograph provides an up-to-date overview on methods and
techniques in seismology, with a focus on describing and detecting
seismic waves in anisotropic media. The author discusses
structural, physical and mechanical aspects of the crust by
analyzing earthquake data from field studies, rendering the book a
practical reference for researchers in seismology and applied
geophysics. Contents: Rock Anisotropy, Fracture and Earthquake
Assessment Seismic Wave Propagation in Anisotropic Rocks with
Applications to Defining Fractures in Earth Crust Reproducing the
Realistic Compressive-tensile Strength Ratio of Rocks using
Discrete Element Model Rock Fracture under Static and Dynamic
Stress Multiple Linear Regression Analyses on the Relationships
among Magnitude, Rupture Length, Rupture Width, Rupture Area, and
Surface Displacement PI Algorithm Applied to the Sichuan-Yunnan
Region: A Statistical Physics Method for Intermediate-term
Medium-range Earthquake Forecast in Continental China Probabilistic
Seismic Hazard Assessment for Pacific Island Countries
The book covers multi-disciplinary topics in observational,
computational and applied geophysics in aspects of solid earth
system. The authors provide an up-to-date overview for methods and
techniques in seismology, with a focus on fault structure, strong
ground motion and earthquake forecast based on full-3D earth
structure models. Abundant of case studies make it a practical
reference for researchers in seismology and applied geophysics.
This book offers a comprehensive introduction to advanced methods
for image and video analysis and processing. It covers deraining,
dehazing, inpainting, fusion, watermarking and stitching. It
describes techniques for face and lip recognition, facial
expression recognition, lip reading in videos, moving object
tracking, dynamic scene classification, among others. The book
combines the latest machine learning methods with computer vision
applications, covering topics such as event recognition based on
deep learning,dynamic scene classification based on topic model,
person re-identification based on metric learning and behavior
analysis. It also offers a systematic introduction to image
evaluation criteria showing how to use them in different
experimental contexts. The book offers an example-based practical
guide to researchers, professionals and graduate students dealing
with advanced problems in image analysis and computer vision.
This book presents review papers and research articles focusing on
the 2008 Wenchuan earthquake in Sichuan, China, discussing
cross-disciplinary and multiple thematic aspects of modern
seismological, geophysical, geological and stochastic methodology
and technology. Resulting from international and regional
earthquake research and disaster mitigation collaborations, and
written by international authors from multiple institutions and
disciplines, it describes methods and techniques in earthquake
science based on investigations of the Wenchuan earthquake. It also
includes extensive reference lists to aid further research. The
book helps both senior researchers and graduate students in
earthquake science to broaden their horizons in data analysis,
numerical modeling and structural retrieval for the tectonic,
geological, geophysical and mechanical interpretation of the 2008
M8 Wenchuan earthquake to support a global and regional cooperation
for preparedness, and the mitigation and management of seismic
risk.
This work presents current approaches in geophysical research of
earthquakes. A global authorship from top institutions presents
case studies to model, measure, and monitor earthquakes. Among
others a full-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.
This book introduces an integrated conceptual framework of the
China Seismic Experimental Site (CSES), describes its scientific
challenges and research priorities, and reports preliminary results
coming out of observational infrastructure in seismology,
tectonophysics, geodesy, geophysics and geochemistry. Preliminary
community fault model, community velocity model, and community
strain rate model in the CSES are described in this book. A
multidisciplinary test observation system includes GNSS, seismic
array, and deep drilling system under construct around middle
segment of the Xiansuihe-Xiaojiang fault and other seismogenic
faults in the CSES which are also introduced. This book introduces
multidisciplinary topics and a wide spectrum of solid earth system
to describe various disciplines, methods, and techniques through
the CSES. This book presents a vision of the CSES that is dedicated
to deepen the scientific understanding of continental earthquake
preparation and occurrence and enhance the disaster resilience of
the society. It aims at establishing a field laboratory of
earthquake science, in which international and interdisciplinary
cooperation could be fostered and supported. Contents of this book
include the following: * History of Seismic Experiment Sites in the
World. * Launching of CSES Project: Seismicity, Existed Earthquake
Monitoring Networks, and Historical Seismic Disasters. *
Seismotectonics and Geodynamics of the Eastern Margin of the
Tibetan Plateau with Implication for the CSES. * Theoretical
Framework of CSES in View of Natural Science and in view of Social
Science. * Updated Earthquake Monitoring Network in China. * CSES
Community Models of Geology, Structure, and Deformation. *
Earthquake Forecasting Models. * CSES Products: Massive Data
Procession and Distribution. * A Review of the Field Expedition of
the June 17, 2019, Changning, Sichuan, M6.0 Earthquake. * Rupture
Structure and Earthquake Risk of the South Longmenshan Fault Viewed
by Guided Waves. * Seismic Risk Assessment. * Model of a Seismic
Experimental Site with Application to the Comparative Study between
CSES and ASES.
This book introduces an integrated conceptual framework of the
China Seismic Experimental Site (CSES), describes its scientific
challenges and research priorities, and reports preliminary results
coming out of observational infrastructure in seismology,
tectonophysics, geodesy, geophysics and geochemistry. Preliminary
community fault model, community velocity model, and community
strain rate model in the CSES are described in this book. A
multidisciplinary test observation system includes GNSS, seismic
array, and deep drilling system under construct around middle
segment of the Xiansuihe-Xiaojiang fault and other seismogenic
faults in the CSES which are also introduced. This book introduces
multidisciplinary topics and a wide spectrum of solid earth system
to describe various disciplines, methods, and techniques through
the CSES. Â This book presents a vision of the CSES that is
dedicated to deepen the scientific understanding of continental
earthquake preparation and occurrence and enhance the disaster
resilience of the society. It aims at establishing a field
laboratory of earthquake science, in which international and
interdisciplinary cooperation could be fostered and supported.
Contents of this book include the following: • History of Seismic
Experiment Sites in the World. • Launching of CSES Project:
Seismicity, Existed Earthquake Monitoring Networks, and Historical
Seismic Disasters. • Seismotectonics and Geodynamics of the
Eastern Margin of the Tibetan Plateau with Implication for the
CSES. • Theoretical Framework of CSES in View of Natural Science
and in view of Social Science. • Updated Earthquake
Monitoring Network in China. • CSES Community Models of
Geology, Structure, and Deformation. • Earthquake
Forecasting Models. • CSES Products: Massive Data
Procession and Distribution. • A Review of the Field
Expedition of the June 17, 2019, Changning, Sichuan, M6.0
Earthquake. • Rupture Structure and Earthquake Risk of the
South Longmenshan Fault Viewed by Guided Waves. • Seismic
Risk Assessment. • Model of a Seismic Experimental Site
with Application to the Comparative Study between CSES and ASES.
Â
This book offers a comprehensive introduction to advanced methods
for image and video analysis and processing. It covers deraining,
dehazing, inpainting, fusion, watermarking and stitching. It
describes techniques for face and lip recognition, facial
expression recognition, lip reading in videos, moving object
tracking, dynamic scene classification, among others. The book
combines the latest machine learning methods with computer vision
applications, covering topics such as event recognition based on
deep learning,dynamic scene classification based on topic model,
person re-identification based on metric learning and behavior
analysis. It also offers a systematic introduction to image
evaluation criteria showing how to use them in different
experimental contexts. The book offers an example-based practical
guide to researchers, professionals and graduate students dealing
with advanced problems in image analysis and computer vision.
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