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This book addresses applications of earthquake engineering for both
offshore and land-based structures. It is self-contained as a
reference work and covers a wide range of topics, including topics
related to engineering seismology, geotechnical earthquake
engineering, structural engineering, as well as special contents
dedicated to design philosophy, determination of ground motions,
shock waves, tsunamis, earthquake damage, seismic response of
offshore and arctic structures, spatial varied ground motions,
simplified and advanced seismic analysis methods, sudden subsidence
of offshore platforms, tank liquid impacts during earthquakes,
seismic resistance of non-structural elements, and various types of
mitigation measures, etc. The target readership includes
professionals in offshore and civil engineering, officials and
regulators, as well as researchers and students in this field.
Book authors come from both academia and industry It places a
special focus on linking the gap between the theory and engineering
practice. Covers a wide range of topics directly guiding structural
engineering calculations
This book presents a comprehensive topical overview on soil
dynamics and foundation modeling in offshore and earthquake
engineering. The spectrum of topics include, but is not limited to,
soil behavior, soil dynamics, earthquake site response analysis,
soil liquefactions, as well as the modeling and assessment of
shallow and deep foundations. The author provides the reader with
both theory and practical applications, and thoroughly links the
methodological approaches with engineering applications. The book
also contains cutting-edge developments in offshore foundation
engineering such as anchor piles, suction piles, pile torsion
modeling, soil ageing effects and scour estimation. The target
audience primarily comprises research experts and practitioners in
the field of offshore engineering, but the book may also be
beneficial for graduate students.
Engineering dynamics and vibrations has become an essential topic
for ensuring structural integrity and operational functionality in
different engineering areas. However, practical problems regarding
dynamics and vibrations are in many cases handled without success
despite large expenditures. This book covers a wide range of topics
from the basics to advances in dynamics and vibrations; from
relevant engineering challenges to the solutions; from engineering
failures due to inappropriate accounting of dynamics to mitigation
measures and utilization of dynamics. It lays emphasis on
engineering applications utilizing state-of-the-art information.
Engineering dynamics and vibrations has become an essential topic
for ensuring structural integrity and operational functionality in
different engineering areas. However, practical problems regarding
dynamics and vibrations are in many cases handled without success
despite large expenditures. This book covers a wide range of topics
from the basics to advances in dynamics and vibrations; from
relevant engineering challenges to the solutions; from engineering
failures due to inappropriate accounting of dynamics to mitigation
measures and utilization of dynamics. It lays emphasis on
engineering applications utilizing state-of-the-art information.
This book presents up-to-date knowledge of dynamic analysis in
engineering world. To facilitate the understanding of the topics by
readers with various backgrounds, general principles are linked to
their applications from different angles. Special interesting
topics such as statistics of motions and loading, damping modeling
and measurement, nonlinear dynamics, fatigue assessment, vibration
and buckling under axial loading, structural health monitoring,
human body vibrations, and vehicle-structure interactions etc., are
also presented. The target readers include industry professionals
in civil, marine and mechanical engineering, as well as researchers
and students in this area.
This book presents up-to-date knowledge of dynamic analysis and
its applications in engineering world. It covers the relevant
topics in analytical, numerical and experimental aspects. To
facilitate the understanding of the topics by readers with various
backgrounds, general principles are linked to their applications
from different angles. Special interesting topics such as
statistics of motions and dynamic loading, damping modeling and
measurement, nonlinear dynamics, finite element analysis, computer
systems for calculation efficiency, structural health monitoring
and human body vibrations etc., are also presented. The target
readers include industry professionals in civil, marine and
mechanical engineering as well as researchers and students in this
area.
This book addresses applications of earthquake engineering for both
offshore and land-based structures. It is self-contained as a
reference work and covers a wide range of topics, including topics
related to engineering seismology, geotechnical earthquake
engineering, structural engineering, as well as special contents
dedicated to design philosophy, determination of ground motions,
shock waves, tsunamis, earthquake damage, seismic response of
offshore and arctic structures, spatial varied ground motions,
simplified and advanced seismic analysis methods, sudden subsidence
of offshore platforms, tank liquid impacts during earthquakes,
seismic resistance of non-structural elements, and various types of
mitigation measures, etc. The target readership includes
professionals in offshore and civil engineering, officials and
regulators, as well as researchers and students in this field.
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