Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering : A Tribute to the Research Contributions of Prof. Andrei Reinhorn (Geotechnical, Geological and Earthquake Engineering) (2015)

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Computational Methods, Seismic Protection, Hybrid Testing and Resilience in Earthquake Engineering : A Tribute to the Research Contributions of Prof. Andrei Reinhorn (Geotechnical, Geological and Earthquake Engineering) (2015)

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  • 製本 Hardcover:ハードカバー版/ページ数 329 p.
  • 商品コード 9783319063935

Full Description

The book is a tribute to the research contribution of Professor Andrei Reinhorn in the field of earthquake engineering. It covers all the aspects connected to earthquake engineering starting from computational methods, hybrid testing and control, resilience and seismic protection which have been the main research topics in the field of earthquake engineering in the last 30 years. These were all investigated by Prof. Reinhorn throughout his career. The book provides the most recent advancements in these four different fields, including contributions coming from six different countries giving an international outlook to the topics.

Contents

Introduction.- Genesis of 3D-BASIS—its impact on nonlinear dynamic analysis of 3D base isolated structures and implementation in practice—and recent updates including the addition of new Negative Stiffness System.- The Genesis of IDARC and Advances in Macromodeling for Nonlinear Analysis of RC Structures.- A novel method for solving random eigenvalue problems.- Three dimensional Formulation of Large Dis-placement problems: the zipper frame example.- Simplified Seismic Evaluation of Structures using Adaptive Pushover Analysis.- Evaluation of the seismic capacity of nonstructural components.- Reference quantities and values for a possible interpretation of the data acquired from monitoring systems of historical buildings.- A versatile hybrid testing system and its application in developing hybrid simulation methods for NEESR projects.- Introduction to Resilience-Based design.- Modeling Economic Dimension of Community Resilience.- Seismic Performance of Health care facilities using Discrete Event simulation models.- On the seismic behavior of viscously coupled shear walls.- An energy-based method for the design of supplemental damping for inelastic structures.- Seismic response and stability of the rocking frame.- The dispersion of Concrete compressive strength of existing buildings.- Concrete strength variability as a source of irregularity for existing RC structures.- Evaluating the Efficiency of Recent Nonlinear Static Procedures on the Seismic Assessment of an Asymmetric Plan Building.

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