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Seismic Analysis and Design using the Endurance Time Method

Seismic Analysis and Design using the Endurance Time Method
Author: Homayoon E. Estekanchi
Publisher: CRC Press
Total Pages: 240
Release: 2021-10-08
Genre: Technology & Engineering
ISBN: 1000457648

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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.


Seismic Analysis and Design Using the Endurance Time Method, Volume II

Seismic Analysis and Design Using the Endurance Time Method, Volume II
Author: Homayoon Estekanchi
Publisher:
Total Pages: 0
Release: 2018-01-03
Genre: Technology & Engineering
ISBN: 9781947083264

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Annotation "Earthquakes don't kill people, buildings do." That has long been the clich but true axiom of all approaches to mitigating the dangers of earthquakes to people. And in that light, structural engineers have derived many analytic approaches to understanding how buildings behave when enduring the different kinds of shock waves generated by earthquakes and how to design buildings to resist being destroyed by those shock waves. One of the more innovative approaches has been the "endurance time method." This is a time-based, dynamic structural analysis computational method that can give good approximations of complex structural behavior under earthquake forces, and do so with more simplified analysis. It is a relatively new analytical tool, having only been conceptually developed in 2004 and actually applied beginning in 2007. It is proving itself to be highly useful, and this book covers the basic principles of the method, and the critical nature of excitation functions. The second volume explains practical, proven applications in designing earthquake-resistant structures, and analysis of structural response to actual seismic events. It offers applications of the method to a number of seismic engineering problems, including multicomponent analysis and value-based seismic design.


Seismic Analysis and Design Using the Endurance Time Method, Volume I

Seismic Analysis and Design Using the Endurance Time Method, Volume I
Author: Homayoon Estekanchi
Publisher: Momentum Press
Total Pages: 139
Release: 2018-01-03
Genre: Technology & Engineering
ISBN: 1947083058

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A new approach to seismic assessment of structures called endurance time method (ETM) is developed. ETM is a dynamic analysis procedure in which intensifying dynamic excitations are used as the loading function. ETM provides many unique benefits in seismic assessment and design of structures and is a response history-based procedure. ETM considerably reduces the computational effort needed in typical response history analyses. Conceptual simplicity makes ETM a great tool for preliminary response history analysis of almost any dynamic structural system. Most important areas of application of ETM are in the fields of seismic design optimization, value-based seismic design, and experimental studies. This book is aimed to serve as a coherent source of information for students, engineers, and researchers who want to familiarize themselves with the concepts and put the concepts into practice.


Endurance Time Excitation Functions

Endurance Time Excitation Functions
Author: Homayoon E. Estekanchi
Publisher: CRC Press
Total Pages: 147
Release: 2022-11-30
Genre: Technology & Engineering
ISBN: 1000771385

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Seismic assessment and earthquake-resistant design are essential applications of earthquake engineering for achieving seismic safety for buildings, bridges, infrastructure, and many other components of the built environment. The Endurance Time Method (ETM) is used for seismic analysis of simple and complex structural systems and civil engineering infrastructure as well as producing optimal and cost-effective structural and detail designs. ETM is a relatively new approach to seismic assessment and design of structures. It has developed into a versatile tool in the field, and its practical applications are expected to increase greatly in the near future.


Seismic Analysis and Design Using the Endurance Time Method, Volume II

Seismic Analysis and Design Using the Endurance Time Method, Volume II
Author: Homayoon Estekanchi
Publisher: Momentum Press
Total Pages: 135
Release: 2018-01-03
Genre: Technology & Engineering
ISBN: 1947083279

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A new approach to seismic assessment of structures called endurance time method (ETM) is developed. ETM is a dynamic analysis procedure in which intensifying dynamic excitations are used as the loading function. ETM provides many unique benefits in seismic assessment and design of structures and is a response history-based procedure. ETM considerably reduces the computational effort needed in typical response history analyses. Conceptual simplicity makes ETM a great tool for preliminary response history analysis of almost any dynamic structural system. Most important areas of application of ETM are in the fields of seismic design optimization, value-based seismic design, and experimental studies. This book is aimed to serve as a coherent source of information for students, engineers, and researchers who want to familiarize themselves with the concepts and put the concepts into practice.


Response Spectrum Method in Seismic Analysis and Design of Structures

Response Spectrum Method in Seismic Analysis and Design of Structures
Author: Ajaya Kumar Gupta
Publisher: Routledge
Total Pages: 187
Release: 2017-11-22
Genre: Technology & Engineering
ISBN: 1351418750

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New developments in the response spectrum method have led to calculations in seismic stresses that are more accurate, and usually lower, than those obtained by conventional methods. This new textbook examines the wealth of information on the response spectrum method generated by the latest research and presents the background theory in simplified form. Applications of these methods is essential in the seismic design of critical structures, such as nuclear power plants and petroleum facilities. In new construction, the reduced seismic stresses will result in efficient and economic design. For facilities already built, these more accurate methods can be used where the facility is being reassessed for higher loads and in the calculation of margins. Written by an acknowledged expert in this and related fields, this volume is ideal as a graduate text for courses in structural and earthquake engineering. It is also an excellent reference for civil, structural, mechanical, and earthquake engineers.


Seismic Analysis of Structures

Seismic Analysis of Structures
Author: T. K. Datta
Publisher: John Wiley & Sons
Total Pages: 472
Release: 2010-03-16
Genre: Technology & Engineering
ISBN: 047082462X

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While numerous books have been written on earthquakes, earthquake resistance design, and seismic analysis and design of structures, none have been tailored for advanced students and practitioners, and those who would like to have most of the important aspects of seismic analysis in one place. With this book, readers will gain proficiencies in the following: fundamentals of seismology that all structural engineers must know; various forms of seismic inputs; different types of seismic analysis like, time and frequency domain analyses, spectral analysis of structures for random ground motion, response spectrum method of analysis; equivalent lateral load analysis as given in earthquake codes; inelastic response analysis and the concept of ductility; ground response analysis and seismic soil structure interaction; seismic reliability analysis of structures; and control of seismic response of structures. Provides comprehensive coverage, from seismology to seismic control Contains useful empirical equations often required in the seismic analysis of structures Outlines explicit steps for seismic analysis of MDOF systems with multi support excitations Works through solved problems to illustrate different concepts Makes use of MATLAB, SAP2000 and ABAQUAS in solving example problems of the book Provides numerous exercise problems to aid understanding of the subject As one of the first books to present such a comprehensive treatment of the topic, Seismic Analysis of Structures is ideal for postgraduates and researchers in Earthquake Engineering, Structural Dynamics, and Geotechnical Earthquake Engineering. Developed for classroom use, the book can also be used for advanced undergraduate students planning for a career or further study in the subject area. The book will also better equip structural engineering consultants and practicing engineers in the use of standard software for seismic analysis of buildings, bridges, dams, and towers. Lecture materials for instructors available at www.wiley.com/go/dattaseismic


Seismic Design Methods for Steel Building Structures

Seismic Design Methods for Steel Building Structures
Author: George A. Papagiannopoulos
Publisher: Springer Nature
Total Pages: 519
Release: 2022-01-01
Genre: Science
ISBN: 3030806871

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The book, after two introductory chapters on seismic design principles and structural seismic analysis methods, proceeds with the detailed description of seismic design methods for steel building structures. These methods include all the well-known methods, like force-based or displacement-based methods, plus some other methods developed by the present authors or other authors that have reached a level of maturity and are applicable to a large class of steel building structures. For every method, detailed practical examples and supporting references are provided in order to illustrate the methods and demonstrate their merits. As a unique feature, the present book describes not just one, as it is the case with existing books on seismic design of steel structures, but various seismic design methods including application examples worked in detail. The book is a valuable source of information, not only for MS and PhD students, but also for researchers and practicing engineers engaged with the design of steel building structures.


Dam Maintenance and Rehabilitation II

Dam Maintenance and Rehabilitation II
Author: Rafael Romeo García
Publisher: CRC Press
Total Pages: 1161
Release: 2010-11-18
Genre: Technology & Engineering
ISBN: 0203829883

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As dams age, they are subject to a series of external agents and processes which tend to deteriorate the qualities with which they were originally conceived to stand against these actions. At the same time, it is often necessary to respond to increased safety standards, either in the structural or hydrological fields. Reservoir sedimentation or wat


Energy Methods in Stress Analysis

Energy Methods in Stress Analysis
Author: Kenneth Molton
Publisher: Momentum Press
Total Pages: 132
Release: 2018-12-18
Genre: Technology & Engineering
ISBN: 1949449181

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This book builds the subject from a foundation that static equilibrium occurs when the rate of change of work done by the load is equal to the rate of change of strain energy in the structure, Energy methods are a powerful tool for the stress analysis of loaded structures. This book builds the subject from a foundation that static equilibrium occurs when the rate of change of work done by the load is equal to the rate of change of strain energy in the structure. Advanced applications of the method are easily developed from this fundamental principle by partial differentiation of the appropriate terms. The methods solve linear problems, statically indeterminate structures, non-linear problems, frames and the derivation of stiffness matrices used in finite element analysis. Critical buckling loads for struts, plates and panels are modelled by comparison of the strain energy stored in the unbuckled and buckled shapes. This method develops an interesting discussion on the theory of buckling of a long slender strut which is additional to those in traditional texts. Post buckling stiffness of plates and panels are modelled using assumed shapes for strain energy calculation. The presentation offers a clear reasoning leading to analysis possibilities not seen in traditional texts which espouse concepts of virtual work, minimum potential energy, complementary energy, and the unit load method.