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New Edition: Introduction to Computational Earthquake Engineering
(3rd Edition)Introduction to Computational Earthquake Engineering
covers solid continuum mechanics, finite element method and
stochastic modeling comprehensively, with the second and third
chapters explaining the numerical simulation of strong ground
motion and faulting, respectively. Stochastic modeling is used for
uncertain underground structures, and advanced analytical methods
for linear and non-linear stochastic models are presented. The
verification of these methods by comparing the simulation results
with observed data is then presented, and examples of numerical
simulations which apply these methods to practical problems are
generously provided. Furthermore three advanced topics of
computational earthquake engineering are covered, detailing
examples of applying computational science technology to earthquake
engineering problems.
Huge earthquakes and tsunamis have caused serious damage to
important structures such as civil infrastructure elements,
buildings and power plants around the globe. To quantitatively
evaluate such damage processes and to design effective prevention
and mitigation measures, the latest high-performance computational
mechanics technologies, which include telascale to petascale
computers, can offer powerful tools. The phenomena covered in this
book include seismic wave propagation in the crust and soil,
seismic response of infrastructure elements such as tunnels
considering soil-structure interactions, seismic response of
high-rise buildings, seismic response of nuclear power plants,
tsunami run-up over coastal towns and tsunami inundation
considering fluid-structure interactions. The book provides all
necessary information for addressing these phenomena, ranging from
the fundamentals of high-performance computing for finite element
methods, key algorithms of accurate dynamic structural analysis,
fluid flows with free surfaces, and fluid-structure interactions,
to practical applications with detailed simulation results. The
book will offer essential insights for researchers and engineers
working in the field of computational seismic/tsunami engineering.
This major reference summarizes the theory, analysis methods, and
computational results from supercomputers of various earthquake
simulations using supercomputers. It covers simulations in the
fields of physical geology, earthquake engineering — specifically
the seismic response of structures — and the socioeconomic impact
of post-earthquake recovery on cities and societies. These
simulations provide an effective bird's-eye view of earthquake
occurrence, earthquake damage, and recovery from the damage.
This book provides rigorous foundations of applying modern
computational mechanics to earthquake engineering. The scope covers
the numerical analysis of earthquake wave propagation processes and
the faulting processes, and also presents the most advanced
numerical simulations of earthquake hazards and disasters that can
take place in an urban area.Two new chapters included are advanced
topics on high performance computing and for constructing an
analysis model.This is the first book in earthquake engineering
that explains the application of modern numerical computation
(which includes high performance computing) to various engineering
seismology problems.
This book provides rigorous foundations of applying modern
computational mechanics to earthquake engineering. The scope covers
the numerical analysis of earthquake wave propagation processes and
the faulting processes, and also presents the most advanced
numerical simulations of earthquake hazards and disasters that can
take place in an urban area.Two new chapters included are advanced
topics on high performance computing and for constructing an
analysis model.This is the first book in earthquake engineering
that explains the application of modern numerical computation
(which includes high performance computing) to various engineering
seismology problems.
New Edition: Introduction to Computational Earthquake Engineering
(3rd Edition)Introduction to Computational Earthquake Engineering
covers solid continuum mechanics, finite element method and
stochastic modeling comprehensively, with the second and third
chapters explaining the numerical simulation of strong ground
motion and faulting, respectively. Stochastic modeling is used for
uncertain underground structures, and advanced analytical methods
for linear and non-linear stochastic models are presented. The
verification of these methods by comparing the simulation results
with observed data is then presented, and examples of numerical
simulations which apply these methods to practical problems are
generously provided. Furthermore three advanced topics of
computational earthquake engineering are covered, detailing
examples of applying computational science technology to earthquake
engineering problems.
Huge earthquakes and tsunamis have caused serious damage to
important structures such as civil infrastructure elements,
buildings and power plants around the globe. To quantitatively
evaluate such damage processes and to design effective prevention
and mitigation measures, the latest high-performance computational
mechanics technologies, which include telascale to petascale
computers, can offer powerful tools. The phenomena covered in this
book include seismic wave propagation in the crust and soil,
seismic response of infrastructure elements such as tunnels
considering soil-structure interactions, seismic response of
high-rise buildings, seismic response of nuclear power plants,
tsunami run-up over coastal towns and tsunami inundation
considering fluid-structure interactions. The book provides all
necessary information for addressing these phenomena, ranging from
the fundamentals of high-performance computing for finite element
methods, key algorithms of accurate dynamic structural analysis,
fluid flows with free surfaces, and fluid-structure interactions,
to practical applications with detailed simulation results. The
book will offer essential insights for researchers and engineers
working in the field of computational seismic/tsunami engineering.
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