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Simplified dynamic analysis of high-...
~
Takabatake, Hideo.
Simplified dynamic analysis of high-rise buildings = applications to simplified seismic diagnosis and retrofit using the extended rod theory /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Simplified dynamic analysis of high-rise buildings/ by Hideo Takabatake ... [et al.].
Reminder of title:
applications to simplified seismic diagnosis and retrofit using the extended rod theory /
other author:
Takabatake, Hideo.
Published:
Singapore :Springer Singapore : : 2019.,
Description:
xiv, 277 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Structural analysis (Engineering) -
Online resource:
https://doi.org/10.1007/978-981-13-7185-1
ISBN:
9789811371851
Simplified dynamic analysis of high-rise buildings = applications to simplified seismic diagnosis and retrofit using the extended rod theory /
Simplified dynamic analysis of high-rise buildings
applications to simplified seismic diagnosis and retrofit using the extended rod theory /[electronic resource] :by Hideo Takabatake ... [et al.]. - Singapore :Springer Singapore :2019. - xiv, 277 p. :ill., digital ;24 cm.
Structural Properties of High-rise Buildings -- Earthquake Response Analysis of High-rise Buildings -- Measures for the Long- period Ground Motion -- Equivalent Rod Theory -- Analysis of High-rise Buildings by the Rod Theory -- Analysis Example by the Rod Theory -- Application SSD, Designed for Response Analysis Using the Rod Theory -- Analysis Considering Soil-Structure Interaction -- Amplification of Earthquake Ground Motions by Surface Ground -- Fundamental Information Notes of Structural Design -- APPENDIX.
This book presents a simple analytical method based on the extended rod theory that allows the earthquake resistance of high-rise buildings to be easily and accurately evaluated at the preliminary design stage. It also includes practical software for applying the extended rod theory to the dynamic analysis of actual buildings and structures. High-rise buildings in large cities, built on soft ground consisting of sedimentary rock, tend to have low natural frequency. If ground motion due to an earthquake occurs at distant hypocenters, the vibration wave can be propagated through several sedimentary layers and act on skyscrapers as a long-period ground motion, potentially producing a resonance phenomenon that can cause severe damage. Accordingly, there is a pressing need to gauge the earthquake resistance of existing skyscrapers and to improve their seismic performance. This book was written by authors who have extensive experience in tall-building seismic design in Japan. The software included enables readers to perform dynamic calculations of skyscrapers' resistance to vibrations. As such, it offers a valuable resource for practitioners and engineers, as well as students of civil engineering.
ISBN: 9789811371851
Standard No.: 10.1007/978-981-13-7185-1doiSubjects--Topical Terms:
528472
Structural analysis (Engineering)
LC Class. No.: TA645
Dewey Class. No.: 624.17
Simplified dynamic analysis of high-rise buildings = applications to simplified seismic diagnosis and retrofit using the extended rod theory /
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Structural Properties of High-rise Buildings -- Earthquake Response Analysis of High-rise Buildings -- Measures for the Long- period Ground Motion -- Equivalent Rod Theory -- Analysis of High-rise Buildings by the Rod Theory -- Analysis Example by the Rod Theory -- Application SSD, Designed for Response Analysis Using the Rod Theory -- Analysis Considering Soil-Structure Interaction -- Amplification of Earthquake Ground Motions by Surface Ground -- Fundamental Information Notes of Structural Design -- APPENDIX.
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This book presents a simple analytical method based on the extended rod theory that allows the earthquake resistance of high-rise buildings to be easily and accurately evaluated at the preliminary design stage. It also includes practical software for applying the extended rod theory to the dynamic analysis of actual buildings and structures. High-rise buildings in large cities, built on soft ground consisting of sedimentary rock, tend to have low natural frequency. If ground motion due to an earthquake occurs at distant hypocenters, the vibration wave can be propagated through several sedimentary layers and act on skyscrapers as a long-period ground motion, potentially producing a resonance phenomenon that can cause severe damage. Accordingly, there is a pressing need to gauge the earthquake resistance of existing skyscrapers and to improve their seismic performance. This book was written by authors who have extensive experience in tall-building seismic design in Japan. The software included enables readers to perform dynamic calculations of skyscrapers' resistance to vibrations. As such, it offers a valuable resource for practitioners and engineers, as well as students of civil engineering.
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