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High-performance computing for struc...
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Yoshimura, Shinobu.
High-performance computing for structural mechanics and earthquake/tsunami engineering
Record Type:
Language materials, printed : Monograph/item
Title/Author:
High-performance computing for structural mechanics and earthquake/tsunami engineering/ edited by Shinobu Yoshimura, Muneo Hori, Makoto Ohsaki.
other author:
Yoshimura, Shinobu.
Published:
Cham :Springer International Publishing : : 2016.,
Description:
v, 199 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
High performance computing. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-21048-3
ISBN:
9783319210483
High-performance computing for structural mechanics and earthquake/tsunami engineering
High-performance computing for structural mechanics and earthquake/tsunami engineering
[electronic resource] /edited by Shinobu Yoshimura, Muneo Hori, Makoto Ohsaki. - Cham :Springer International Publishing :2016. - v, 199 p. :ill., digital ;24 cm. - Springer tracts in mechanical engineering,2195-9862. - Springer tracts in mechanical engineering..
Fundamentals of high-performance computing for finite element analysis -- Simulation of seismic wave propagation and amplification -- Seismic response simulation of infrastructure -- Seismic response simulation of building structures -- Seismic response simulation of nuclear power plant -- Tsunami run-up Simulation -- Inundation simulation coupling free surface flow and structures.
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.
ISBN: 9783319210483
Standard No.: 10.1007/978-3-319-21048-3doiSubjects--Topical Terms:
528241
High performance computing.
LC Class. No.: TA646 / .H55 2016
Dewey Class. No.: 624.171
High-performance computing for structural mechanics and earthquake/tsunami engineering
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Fundamentals of high-performance computing for finite element analysis -- Simulation of seismic wave propagation and amplification -- Seismic response simulation of infrastructure -- Seismic response simulation of building structures -- Seismic response simulation of nuclear power plant -- Tsunami run-up Simulation -- Inundation simulation coupling free surface flow and structures.
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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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