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ANTI SEISMIC DESIGN OF REINFORCED CONCRETE AND MASONRY STRUCTURES

Degree course Science of architecture
Curriculum Curriculum unico
Learnings Orientamento unico
Academic Year 2019/2020
ECTS 6
Scientific Disciplinary Sector ICAR/08
Year Second year
Time unit
Class hours 60
Educational activity Related and integrative training activities

Single group

Professor PAOLO FUSCHI
Objectives The course deals with topics aimed at understanding the physical-mechanical behavior of buildings in reinforced concrete and masonry subjected to seismic actions. Students will acquire the knowledge and skills that allows the structural analysis of existing buildings, with particular reference to the problems of territories characterized by a high level of seismicity. The learning route includes the study of the causes of structural degradation/disruption, the interpretation of the incipient cracks as well as of their propagation, the study of the intervention techniques and, in particular, the study of the structural typologies of residential buildings concerning their anti-seismic behavior.
Programme Analysis of degradations and local collapse mechanisms in structures made of reinforced concrete or in masonry. Investigations, tests on materials and structural elements in situ and in the laboratory. Understanding of crack propagation. Technical standards for existing buildings. Knowledge levels of a structure. Adaptation, improvement, repair, or local intervention. Design criteria and types of intervention. Materials to be used and in situ techniques of structural elements. Case studies. The fulfillment of the AeDES form, for the evaluation of practicability and damage in post-seismic emergency, and of the CARTIS form for the Typological-Structural characterization of residential buildings.
Books F. P. Beer, E. R. Johnston, J.T. DeWolf, D.F. Mazurek. Mechanics of Materials, McGraw-Hill Education, 7th Edition, 2014.
E.P. Popov. Engineering mechanics of solids, Prentice Hall 2nd Edition, 1998.
R. Park, T. Paulay. Reinforced concrete structures, New York, London, etc.: Wiley, 1975.
T. Paulay, M.J.N. Priestley. Seismic design of reinforced concrete and masonry buildings, New York, Wiley 1992.
Traditional teaching method Yes
Distance teaching method No
Mandatory attendance No
Written examination evaluation No
Oral examination evaluation No
Aptitude test evaluation No
Project evaluation No
Internship evaluation No
Evaluation in itinere No
Practice Test No

Further information

Description Document
cartis manuale_1-17 (dispensa) Document
cartis manuale_18-28 (dispensa) Document
scheda AeDES (dispensa) Document
scheda CARTIS (dispensa) Document
Course program (programma) Document
Programma Corso (programma) Document
Scheda di Trasparenza (varie) Document
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No class timetable posted
Codice insegnamento online non pubblicato
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