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Download Structural Seismic Design Optimization and Earthquake Engineering: Formulations and Applications fb2, epub

by Vagelis Plevris,Chara Ch Mitropoulou,Nikos D. Lagaros

Download Structural Seismic Design Optimization and Earthquake Engineering: Formulations and Applications fb2, epub

ISBN: 1466616407
Author: Vagelis Plevris,Chara Ch Mitropoulou,Nikos D. Lagaros
Language: English
Publisher: IGI Global; 1 edition (May 31, 2012)
Pages: 456
Category: Engineering
Subcategory: Engineering
Rating: 4.6
Votes: 319
Size Fb2: 1535 kb
Size ePub: 1117 kb
Size Djvu: 1144 kb
Other formats: mbr mobi lit lrf


Plevris, Vagelis, Chara Ch Mitropoulou, and Nikos D. Lagaros.

Plevris, Vagelis, Chara Ch Mitropoulou, and Nikos D. Structural Seismic Design Optimization and Earthquake Engineering: Formulations and Applications. Dr. Vagelis Plevris is an Associate Professor at the Department of Civil Engineering and Energy Technology of the Oslo and Akershus University College of Applied Sciences in Oslo, Norway. He holds a 5-year Bachelor's Degree in Civil Engineering from the National Technical University of Athens (NTUA) with specialization in Structural Engineering.

Plevris, Vagelis Plevris, Chara Ch Mitropoulou, Nikos D.

Vagelis Plevris, Vagelis Plevris, Chara Ch Mitropoulou, Nikos D. But, much of this attention has been on the linear elastic structural behavior, under static loading condition.

Engineering: Formulations and Applications. The application of the performance-based seismic design concept using alternative formulations is presented in this work. Release Date: May, 2012. The formulations discussed, are implemented within an automated structural design framework using a metaheuristic optimisation algorithm. Such frameworks are able to accommodate any advanced - linear or nonlinear, static or dynamic - analysis procedure and thus replace, the.

Chara Ch. Mitropoulou. seismic response of structures, design optimization procedures, soft computing applications, and other important advance-. ments in seismic analysis and design - Provided by publisher. ISBN 978-1-4666-1640-0 (hardcover) - ISBN 978-1-4666-1641-7 (ebook) - ISBN 978-1-4666-1642-4 (print & perpetual.

But, much of this attention has been on the linear elastic structural behavior, under static loading condition.

Vagelis Plevris, Chara Mitropoulou, Nikos D. Lagaros

Vagelis Plevris, Chara Mitropoulou, Nikos D.

Nikos D. LagarosDean of the School of Civil Engineering . M Papadrakakis, N Lagaros, V Plevris. Structural seismic design optimization and earthquake engineering: formulations and applications: formulations and applications.

M Papadrakakis, N Lagaros, V Plevris. Engineering Optimization 34 (6), 645-669, 2002. Large scale structural optimization: computational methods and optimization algorithms. M Papadrakakis, ND Lagaros, Y Tsompanakis, V Plevris. Archives of Computational Methods in Engineering 8 (3), 239-301, 2001. Lagaros, Chara C. Vagelis Plevris is an Assistant Professor at the Department of Civil and Structural Engineering Educators, School of Pedagogical & Technological Education (ASPETE) in Athens, Greece and . More).

Throughout the past few years, there has been extensive research done on structural design in terms of optimization methods or problem formulation. But, much of this attention has been on the linear elastic structural behavior, under static loading condition. Such a focus has left researchers scratching their heads as it has led to vulnerable structural configurations. What researchers have left out of the equation is the element of seismic loading. It is essential for researchers to take this into account in order to develop earthquake resistant real-world structures.

Structural Seismic Design Optimization and Earthquake Engineering: Formulations and Applications focuses on the research around earthquake engineering, in particular, the field of implementation of optimization algorithms in earthquake engineering problems. Topics discussed within this book include, but are not limited to, simulation issues for the accurate prediction of the seismic response of structures, design optimization procedures, soft computing applications, and other important advancements in seismic analysis and design where optimization algorithms can be implemented. Readers will discover that this book provides relevant theoretical frameworks in order to enhance their learning on earthquake engineering as it deals with the latest research findings and their practical implementations, as well as new formulations and solutions.

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