Coordinatore | HSR HOCHSCHULE FUR TECHNIK RAPPERSWIL
Organization address
address: OBERSEESTRASSE 10 contact info |
Nazionalità Coordinatore | Switzerland [CH] |
Totale costo | 3˙088˙642 € |
EC contributo | 2˙259˙013 € |
Programma | FP7-ENERGY
Specific Programme "Cooperation": Energy |
Code Call | FP7-ENERGY-2011-1 |
Funding Scheme | CP |
Anno di inizio | 2012 |
Periodo (anno-mese-giorno) | 2012-01-02 - 2016-01-01 |
# | ||||
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1 |
HSR HOCHSCHULE FUR TECHNIK RAPPERSWIL
Organization address
address: OBERSEESTRASSE 10 contact info |
CH (RAPPERSWIL) | coordinator | 596˙000.00 |
2 |
HOGSKOLAN DALARNA
Organization address
city: FALUN contact info |
SE (FALUN) | participant | 339˙080.00 |
3 |
TECHNISCHE UNIVERSITAET GRAZ
Organization address
address: Rechbauerstrasse 12 contact info |
AT (GRAZ) | participant | 338˙108.00 |
4 |
COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
Organization address
address: RUE LEBLANC 25 contact info |
FR (PARIS 15) | participant | 335˙400.25 |
5 |
CESKE VYSOKE UCENI TECHNICKE V PRAZE
Organization address
address: ZIKOVA 4 contact info |
CZ (PRAHA) | participant | 236˙605.60 |
6 |
RATIOTHERM HEIZUNG + SOLARTECHNIK GMBH & CO. KG
Organization address
address: WELLHEIMER STRASSE 34 contact info |
DE (DOLLNSTEIN) | participant | 119˙200.00 |
7 |
REGULUS SPOL SRO
Organization address
address: DO KOUTU 1897/3 contact info |
CZ (PRAHA) | participant | 111˙520.00 |
8 |
Viessmann Faulquemont S.A.S.
Organization address
city: Faulquemont contact info |
FR (Faulquemont) | participant | 98˙100.00 |
9 |
ENERGIE SOLAIRE SA
Organization address
address: ZONE INDUSTRIELLE ILE FALCON contact info |
CH (SIERRE) | participant | 85˙000.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'The objective of this project is to develop new innovative products and advanced test methods for a next generation of compact combined renewable energy systems based on solar thermal and heat pump technology for space heating and hot water preparation, using breakthroughs in ICT, new materials and technology. The goal is to achieve 25% energy savings compared to current state of the art systems, with still competitive prices on the market. Thus, the work proposed aims for a seasonal performance factor of the system (solar and heat pump) of e.g. 6 as compared to 4.5 for the current state of the art. This will be possible by using new materials, components and ICT in an integrative approach for new system concepts where the focus is on the overall system's cost and performance. A systematic approach will be used to evaluate new breakthroughs such as e.g. low-cost materials and selective paint for solar collectors that collect solar irradiation as well as ambient heat and PV/T collectors that produce heat as well as electricity. Exergetic optimization of heat pump circuits includes using de-superheating heat exchangers for DHW preparation as a by-product of the more efficient space heating operation, and variable speed controlled compressors for heat pumps that match the collector heat input to the evaporator and/or the demand. New storage concepts include phase change materials (PCM) on the cold side of the heat pump, low cost materials for storage tank construction, improved temperature stratification and charging/discharging control. On the control and ICT side, weather and user forecast based predictive control for intelligent storage charging by different heat sources will help to increase the overall system performance significantly. Online monitoring and fault detection within small controller units will be used to increase system reliability both for the installation phase and for the whole operational life of the installation.'