Description du projet
Bâtiments résidentiels respectueux de l’environnement
La rénovation des bâtiments résidentiels est d’une importance capitale dans la mesure où elle contribue à réduire la consommation énergétique de ces derniers. Le projet Surefit, financé par l’UE, vise à rénover les bâtiments résidentiels en ayant recours à des technologies préfabriquées innovantes et rentables qui ne portent pas atteinte à l’environnement. La méthodologie du projet reposera sur des panneaux au bio-aérogel fabriqués à partir de matériaux à changement de phase, des fenêtres à vitrage photovoltaïque sous vide, des appareils de récupération de chaleur installés sur le toit et les fenêtres, des pompes à chaleur solaires et géothermiques, des refroidisseurs par évaporation, des systèmes solaires thermiques intégrés et des dispositifs d’éclairage. Dans ce contexte, des projets pilotes seront développés dans des bâtiments situés dans cinq environnements européens différents.
Objectif
Surefit will demonstrate fast-track renovation of existing domestic buildings by integrating innovative, cost-effective, and environmentally conscious prefabricated technologies. This is to reach target of near zero energy through reducing heat losses through building envelope, and energy consumption by heating, cooling, ventilation and lighting, while increasing the share of renewable energy in buildings. This will be achieved through a systematic approach involving key stakeholders (building owners/users, manufacturers, product/services developers) in space heating, cooling, domestic hot water, lighting and power generation, as well as a demonstration phase in 5 representative buildings in different European climates.
The technologies will include bio-aerogel panels integrated with phase change materials, photovoltaic (PV) vacuum glazing windows, roof and window heat recovery devices, solar assisted heat pumps/ground source heat pumps, evaporative coolers, integrated solar thermal/PV systems and lighting devices. These will be prefabricated for rapid retrofit with minimal disruption to occupants, ensuring high levels of occupant comfort/indoor environmental quality as well as low risk of moisture-related problems/summer overheating.
The work programme will involve optimal sizing and prefabrication of technologies tailored to building design/requirements; retrofitting/monitoring buildings in different climates with support of advanced building energy management systems; analysing indoor environment quality, energy use, user behaviour/acceptance of the solutions; developing methodology, guidelines/effective operational tools for rapid retrofitting and decision-making; and developing business model involving all relevant actors including, public authorities/investors/users and holistic integration of disciplines across the value chain. These outcomes will be delivered by a consortium comprising leading companies, research/public institutions from European countries.
Champ scientifique
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IA - Innovation actionCoordinateur
2740 120 Porto Salvo
Portugal