Cel
A scalable, replicable, high energy efficient, zero emissions and cost effective SYSTEM to refurbish existing public-owned non-residential buildings to achieve at least 50% energy consumption reduction through:
a) A systemic methodology for optimal building retrofitting towards zero emissions, developed to ensure cost effectiveness, scalability and replicability of the interventions taking into account external (geographical, climatic, resources, social) and internal (envelope, facilities and use) building boundary conditions.
b) Development of demand reduction strategies: Based on envelope U-value improvement through innovative technologies, material applications and design techniques.
c) Development of Energy reduction strategies: An effective interaction and integration of an innovative, scalable, high efficient renewable HVAC hybrid cogeneration system fed with locally available RES, including thermal energy storage strategies as the core of the methodology´s implementation.
d) Effective interactions of energy flows: building to building, building to electrical grid and building to heating and cooling networks and improved methodologies for interconnectivity of smart grids and heating and cooling networks under the control of a building level energy operation system.
Buildings will be considered as single energy-consumption units and at the same time, connected to other buildings forming high energy efficient districts prepared to be connected with other districts around. These energy units will be able to provide advanced energy services (electrical and thermal) to other buildings in their district, which will make the building strategies replicable al district level in order to attract investments.0’
Dziedzina nauki
- engineering and technologyelectrical engineering, electronic engineering, information engineeringelectrical engineeringpower engineeringelectric power distribution
- engineering and technologymechanical engineeringthermodynamic engineering
- engineering and technologyelectrical engineering, electronic engineering, information engineeringelectrical engineeringpower engineeringelectric power generationcombined heat and power
Zaproszenie do składania wniosków
FP7-2013-NMP-ENV-EeB
Zobacz inne projekty w ramach tego zaproszenia
System finansowania
CP-TP - Collaborative Project targeted to a special group (such as SMEs)Koordynator
28033 MADRID
Hiszpania
Zobacz na mapie
Uczestnicy (19)
47151 Boecillo
Zobacz na mapie
29004 Malaga
Zobacz na mapie
39100 Bolzano
Zobacz na mapie
38122 Trento
Zobacz na mapie
Zakończenie uczestnictwa
06800 MERIDA
Zobacz na mapie
4430 Ans
Zobacz na mapie
35010 IZMIR
Zobacz na mapie
34794 Alemdag Cekmekoy, Istanbul
Zobacz na mapie
85 825 Bydgoszcz
Zobacz na mapie
Zakończenie uczestnictwa
70599 Stuttgart
Zobacz na mapie
47035 Gambettola
Zobacz na mapie
4000 LIEGE
Zobacz na mapie
20009 DONOSTIA-SAN SEBASTIAN (GIPUZKOA)
Zobacz na mapie
4000 Liege
Zobacz na mapie
1190 Bruxelles / Brussel
Zobacz na mapie
12071 LA VALL D UIXO
Zobacz na mapie
09010 AYDIN
Zobacz na mapie
Zakończenie uczestnictwa
06800 Mérida
Zobacz na mapie
70176 Stuttgart
Zobacz na mapie