Seismic Assessment and Retrofit of Reinforced Concrete Structures

Many constructions are built with reinforced or prestressed concrete, and most of them are designed or expected to resist earthquake actions in addition to gravity loads. To limit the effects of seismic events on reinforced or prestressed concrete structures, many attempts have been made by research...

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Bibliographic Details
Other Authors: Rossi, Pier Paolo (Editor), Bosco, Melina (Editor)
Format: Electronic Book Chapter
Language:English
Published: MDPI - Multidisciplinary Digital Publishing Institute 2022
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DOAB: description of the publication
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520 |a Many constructions are built with reinforced or prestressed concrete, and most of them are designed or expected to resist earthquake actions in addition to gravity loads. To limit the effects of seismic events on reinforced or prestressed concrete structures, many attempts have been made by researchers in order to (i) improve the knowledge of the response of materials (steel bars and concrete) and members by means of laboratory tests, (ii) develop numerical and capacity models, (iii) enhance procedures for the dynamic analysis and assessment of the seismic performance of structures and (iv) suggest innovative interventions for the seismic retrofit of old and damaged reinforced or prestressed concrete structures. This Special Issue is a collection of 11 important research works that cover a wide range of problems related to the previously mentioned research fields. Both researchers and practical engineers are expected to greatly benefit from this Special Issue in view of their own work and for a better comprehension of the response of r.c. members and structures. 
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650 7 |a Technology: general issues  |2 bicssc 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a seismic retrofitting 
653 |a mainshock-damaged RC frame 
653 |a soft steel damper 
653 |a seismic performance 
653 |a mainshock-aftershock seismic sequence 
653 |a retrofitting 
653 |a modular 
653 |a finite element analysis 
653 |a flexural behavior 
653 |a ductility 
653 |a RC columns 
653 |a strengthening 
653 |a direct fastening 
653 |a steel jackets 
653 |a design procedure 
653 |a precast reinforced concrete deep beam 
653 |a experimental study 
653 |a finite element method (FEM) 
653 |a RC frames 
653 |a brick infills 
653 |a prior damage 
653 |a finite element analyses 
653 |a seismic joint 
653 |a FRP 
653 |a RC corroded columns 
653 |a localised corrosion 
653 |a numerical analyses 
653 |a modelling strategies 
653 |a cyclic actions 
653 |a seismic isolation 
653 |a asymmetric building 
653 |a mode-adaptive bidirectional pushover analysis (MABPA) 
653 |a seismic retrofit 
653 |a momentary energy input 
653 |a RC-framed skin 
653 |a seismic assessment 
653 |a nonlinear static analysis 
653 |a existing RC buildings 
653 |a retrofitting intervention 
653 |a column removal 
653 |a non-linear analysis 
653 |a progressive collapse 
653 |a reinforced concrete frame 
653 |a seismic response 
653 |a optimization 
653 |a curtailed shear wall 
653 |a buckling-restrained brace 
653 |a genetic algorithm 
653 |a seismic upgrading 
653 |a RC buildings 
653 |a industrial buildings 
653 |a industrial heritage 
653 |a steel exoskeletons 
653 |a photovoltaic plants 
653 |a n/a 
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