The research aims at studying an innovative construction system (called S.E.Con. System1 - Sustainable Ecological Construction System) to realize sustainable buildings, having both acoustic and thermal high performance, in which the seismic-resistant structural elements are small reinforced concrete walls widely spread on the perimeter of the building and where all vertical structural and secondary elements (infill panels) are constructed using shotcrete. The results of experimental tests on a single story sample building and on structural walls, aimed to assess the structural, acoustic, and thermal insulation performances of the devised system, demonstrate that the system appears suitable for high seismicity areas, and that thermal and acoustic criteria set for passive constructions are met. Finally, an evaluation of the carbon footprint (CFP) has also been carried out, demonstrating a reduction of about 30% in the CFP of the construction system with respect to traditional construction systems.

(2015). A sustainable and innovative construction system [conference presentation - intervento a convegno]. Retrieved from http://hdl.handle.net/10446/56190

A sustainable and innovative construction system

Bregoli, Guido;Riva, Paolo;
2015-01-01

Abstract

The research aims at studying an innovative construction system (called S.E.Con. System1 - Sustainable Ecological Construction System) to realize sustainable buildings, having both acoustic and thermal high performance, in which the seismic-resistant structural elements are small reinforced concrete walls widely spread on the perimeter of the building and where all vertical structural and secondary elements (infill panels) are constructed using shotcrete. The results of experimental tests on a single story sample building and on structural walls, aimed to assess the structural, acoustic, and thermal insulation performances of the devised system, demonstrate that the system appears suitable for high seismicity areas, and that thermal and acoustic criteria set for passive constructions are met. Finally, an evaluation of the carbon footprint (CFP) has also been carried out, demonstrating a reduction of about 30% in the CFP of the construction system with respect to traditional construction systems.
2015
Inglese
Durability and Sustainability of Concrete Structures
Chiorino, Mario Alberto; Coppola, Luigi; Mazzotti, Claudio; Realfonzo, Roberto; Riva, Paolo;
9781942727446
305
25
1
10
online
United States
Detroit
American Concrete Institute
esperti anonimi
International Workshop on Durability and Sustainability of Concrete Structures, Bologna, Italy, 1-3 October 2015
Bologna (Italy)
1-3 October 2015
ACI Italy Chapter (American Concrete Institute)
internazionale
contributo
Settore ICAR/09 - Tecnica delle Costruzioni
carbon footprint (CFP); innovative construction system; shear-walls hysteretic behavior; shotcrete; sustainability
info:eu-repo/semantics/conferenceObject
5
Bregoli, Guido; Madini Moretti, Andrea; Parolari, Marco; Riva, Paolo; Santicoli, Marco
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
reserved
Non definito
273
(2015). A sustainable and innovative construction system [conference presentation - intervento a convegno]. Retrieved from http://hdl.handle.net/10446/56190
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