Multi-axis Substructure Testing System for Hybrid Simulation / by Riadh Al-Mahaidi, M. Javad Hashemi, Robin Kalfat, Graeme Burnett, John Wilson.
By: Al-Mahaidi, Riadh, autor
Contributor(s): Hashemi, M. Javad, autor | Kalfat, Robin, autor | Burnett, Graeme, autor | Wilson, John, autor
Material type:
E-bookSeries: (SpringerBriefs in Structural Mechanics , 2520-8020); (Engineering (Springer-11647)).Publisher: Singapore : Springer International Publishing, 2018Description: 1 recurso en línea (XVII, 81 páginas 57 ilustraciones, 45 ilustraciones a color).ISBN: 9789811058677.Subject: Análisis estructural (Ingeniería)
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TA646 .A463 2018 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.15113112 |
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| TA646 2019 EB Stochastic Optimal Control of Structures | TA646 2020 EB Computational Modeling of Tensegrity Structures : Art, Nature, Mechanical and Biological Systems | TA646 2020 EB Swift Analysis of Civil Engineering Structures Using Graph Theory Methods / | TA646 .A463 2018 EB Multi-axis Substructure Testing System for Hybrid Simulation | TA646 .C374 2016 EB Case Studies of Building Pathology in Cultural Heritage | TA646 .H544 2016 EB High-Performance Computing for Structural Mechanics and Earthquake/Tsunami Engineering | TA646 .Z436 2015 EB Tensegrity Structures : Form, Stability, and Symmetry |
Introduction -- Background -- State-of-the-Art System for Hybrid Simulation -- Application of the MAST System for Collapse Experiments -- Closure.
This book describes the multi-axis substructure testing (MAST) system, a simulator developed at Swinburne University of Technology, Australia, which provides state-of-the-art technology for large-scale hybrid testing of structures under realistic scenarios depicting extreme events. The book also demonstrates the responses of physical specimens while they serve as part of the virtual computer model of the full structure subjected to extreme dynamic forces. Experimental studies using the MAST system are expected to enhance design and construction methods and significantly improve the repair and retrofitting of structures endangered by natural disasters and man-made hazards, providing a direct benefit to society by improving public safety and the re silience of the built environment. An additional benefit is increased sustainability in the form of reduced direct and indirect economic losses and social and environmental impacts in the face of extreme events. This book will be of interest to researchers and advanced practitioners in the fields of structural earthquake engineering, geotechnical earthquake engineering, engineering seismology, and experimental dynamics, including seismic qualification. .
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