SUPERCONCRETE · SUstainability-driven international/intersectoral Partnership for Education and Research on modelling next generation CONCRETE
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2015-07-01 → 2019-06-30
- EU contribution
- €468,000
- Participants
- 10
- Scheme
- MSCA-RISE
Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.
Results in brief
SUstainability-driven international/intersectoral Partnership for Education and Research on modelling next generation CONCRETE
SUPERCONCRETE (SUstainability-driven international/intersectoral Partnership for Education and Research on modelling next generation CONCRETE) is a cross-disciplinary international/intersectoral project dealing with theoretical models for next-generation concretes, characterised by a significant sustainability enhancement for the construction industry. Specifically, it focuses on three classes of “next generation” concretes, whose development is currently going on in scientific laboratories, as they appear to be most attractive for making concrete more sustainable and durable: - Low-Carbon Concrete (LCC), characterised by non-conventional constituents, often derived from recycling industrial waste or by-products; - High-Class Concrete (HCC), encompassing materials with enhanced performance in strength, durability; - Fibre-reinforced Cementitious Composites (FCC), with special properties in terms of both fibre/textile reinforcement and matrix. Therefore, developing through-life multi-scale models for these novel materials is the key objective of the SUPERCONCRETE project. Specifically, three transversal modelling issues are considered: - Rheology and Early age; - Hardened state and service life; - Extreme conditions. Each Project Participant brings a specific competence into the consortium, on either the aforementioned innovative classes of concrete or the relevant life stages. A further cross-cutting objective aims at defining a “Sustainability Index”, based on both the constituents and the processes requested for producing each concrete class. The construction sector is still of utmost importance to the European economy. It represents around 850 billion € turnover, which corresponds to about 10% of the GDP, and 12 million jobs. It is a fundamental sector in job generation with one additional job in construction considered to generate two more in other sectors. Unfortunately, the construction sector is mainly based on resource-demanding and energy consuming productions, often results in significant production of waste and, then, is characterised by adverse environmental impacts. In this context, the SUPERCONCRETE project aims to contribute significantly in turning the construction sector from an high environmental impact sector, into a sustainability-driven one. Therefore, the choice of focussing on three advanced concrete materials, potentially more sustainable than the ordinary ones, and the objective of developing an organic set of predictive models for their rational application in newly designed structures, is mainly moved by the aim of enhancing sustainability in the construction sector. The transfer of “next generation“ knowledge to be achieved is, in itself, considered as the key objective for the activities planned in this project. Specifically, the SUPERCONCRETE’s final deliverables will be 1) a joint international course on sustainable concretes with 2) a web-based platform for interacting with students and practitioners and 3) an underlying textbook.
Data: CORDIS, © European Union
Project objective
SUPERCONCRETE is a synergetic cross-disciplinary international/intersectoral project addressing theoretical models for next-generation concretes, characterised by a significant sustainability enhancement for the construction industry. Three advanced concrete classes (CCs) are selected which represent the projects’ key research lines:- Low-Carbon Concrete (LCC), characterised by non-conventional constituents, often derived from recycling industrial waste or by-products;- High-Class Concrete (HCC), encompassing materials with enhanced performance in strength, durability;- Fibre-reinforced Cementitious Composites (FCC), with special features on fibre/textile reinforcement and matrix improvement.Developing synergetic through-life multi-scale models for these novel materials is the key objective of the SUPERCONCRETE project. Particularly, three transversal modelling issues (MIs) are considered:- Rheology and Early age, dealing with the various physical and coupled thermo-hygro-chemical phenomena taking place in the first hours after mixing;- Hardened state and service life, approached by constitutive modelling intended at predicting the instantaneous and long-term behaviour, for both service and ultimate conditions;- Extreme conditions, based on constitutive theories capable of simulating the response under fire and high temperature exposure.Each CC and MI is covered by one participant and the interactions among them is based on a matrix-like organisational approach aiming at achieving a true synergistic collaboration among those with specific CC knowledge and the ones bringing in transversal competences on MIs. A further cross-cutting objective aims at defining a “Sustainability Index”, based on its constituents and processes requested for each CC.SUPERCONCRETE’s final deliverables will be 1) a joint international course on sustainable concretes with 2) an underlying textbook and 3) a web-based platform for interacting with students and practitioners.
Original text from CORDIS.
Participants
- UNIVERSITA DEGLI STUDI DI SALERNO · Fisciano SaCoordinatorItaly
- FUNDACION TECNALIA RESEARCH & INNOVATION · DONOSTIA/SAN SEBASTIANSpain
- GESELLSCHAFT FUER MATERIALFORSCHUNG UND PRUEFUNGSANSTALT FUER DAS BAUWESEN LEIPZIG MBH · LEIPZIGCity levelGermany
- REGENTS OF THE UNIVERSITY OF MICHIGAN · ANN ARBORUnited States
- TECHNISCHE UNIVERSITAT DARMSTADT · DarmstadtGermany
- TECHNISCHE UNIVERSITEIT DELFT · DelftNetherlands
- UNIVERSIDAD DE BUENOS AIRES · Buenos AiresArgentina
- UNIVERSIDADE DO MINHO · BragaPortugal
- UNIVERSIDADE FEDERAL DO RIO DE JANEIRO · RIO DE JANEIROBrazil
- WILHELM ROSER SOHNE GMBH CO. KG · NeresheimGermany
Links
- View on CORDIS
- DOI: 10.3030/645704
- https://arquivo.pt/wayback/20201229184930/https://www.superconcrete-h2020.unisa.it/
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5c6cb25a9&appId=PPGMS
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5c6cb2d8d&appId=PPGMS
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5c6cb31a9&appId=PPGMS
Data: CORDIS, © European Union
