Seismic Analysis and Design using the Endurance Time Method Seismic Analysis and Design using the Endurance Time Method
    • 119,99 €

Publisher Description

The endurance time method (ETM) is a seismic analysis procedure in which intensifying dynamic excitations are used as the loading function, and it provides many unique benefits in the design of structures. It can largely reduce the computational effort needed for the response history analysis of structures. This aids in the practical application of response history-based analysis in problems involving very large models and/or requiring numerous analyses to achieve optimal design goals. A single response history analysis through ETM provides an estimate of the system response at the entire range of seismic intensities of interest, thus making it ideal for applications such as seismic risk assessment, life-cycle cost analysis, and value-based seismic design. Conceptual simplicity also makes ETM a useful tool for preliminary response history analysis of structural systems.

Features:
Presents full coverage of the subject from basic concepts to advanced applied topics. Provides a coherent text on endurance time excitation functions that are essential in endurance time analysis.
Seismic Analysis and Design using the Endurance Time Method serves as a comprehensive resource for students, researchers, and practicing structural engineers who want to familiarize themselves with the concepts and applications of the endurance time method (ETM) as a useful tool for dynamic structural analysis.

GENRE
Professional & Technical
RELEASED
2021
7 October
LANGUAGE
EN
English
LENGTH
252
Pages
PUBLISHER
CRC Press
SIZE
32.5
MB

More Books by Homayoon E. Estekanchi & Hassan A. Vafai

Other Books in This Series

Sustainable Development for the Americas Sustainable Development for the Americas
2021
Reliability-Based Analysis and Design of Structures and Infrastructure Reliability-Based Analysis and Design of Structures and Infrastructure
2021
Endurance Time Excitation Functions Endurance Time Excitation Functions
2022
Thermal and Structural Electronic Packaging Analysis for Space and Extreme Environments Thermal and Structural Electronic Packaging Analysis for Space and Extreme Environments
2021
Experimental Vibration Analysis for Civil Structures Experimental Vibration Analysis for Civil Structures
2020
Reliability and Safety of Cable-Supported Bridges Reliability and Safety of Cable-Supported Bridges
2021