Performance and reliability of a high efficiency flat plate collector - Final results on prototypes

Downloadstatistik des Dokuments (Auswertung nach COUNTER):

Föste, S.; Giovannetti, F.; Ehrmann, N.; Rockendorf, G.: Performance and reliability of a high efficiency flat plate collector - Final results on prototypes. In: Energy Procedia 48 (2014), S. 48-57. DOI: https://doi.org/10.1016/j.egypro.2014.02.007

Version im Repositorium

Zum Zitieren der Version im Repositorium verwenden Sie bitte diesen DOI: https://doi.org/10.15488/4493

Zeitraum, für den die Download-Zahlen angezeigt werden:

Jahr: 
Monat: 

Summe der Downloads: 89




Kleine Vorschau
Zusammenfassung: 
The paper presents the final results of our prototype investigations regarding the performance and reliability of a high efficiency flat plate collector with a gas-filled low-e double-glazing as transparent cover. The measured efficiency of an optimized prototype results in an increase in efficiency of 70 % at a temperature difference of 60 K (G = 500 W/m2) compared to a standard flat plate collector. The effect of additional antireflecting coatings and different gas fillings of the glazing is analyzed by prototype measurements. As the heat losses of the collector are significantly reduced by the low-e glazing, a stagnation temperature of 265 °C was determined at the absorber plate experimentally. The collector components have to withstand these increased temperature loads. Test and assessment methods for the long term stability of the hermetically sealed double-glazing against high temperatures and the combination of temperature and UV-radiation were developed and performed successfully. Further, the reliability of four prototype collectors was confirmed by a one-year outdoor-exposure test. A simplified economic analysis resulted in an optimum operating range for the collector of 80 °C to 110 °C compared to commercially available flat plate and evacuated tube collectors. As the main result of the research project, a new flat plate collector with a significantly increased performance and an experimentally proved reliability was developed up to a prototype status, which can be transferred to industrial production.
Lizenzbestimmungen: CC BY-NC-ND 3.0 Unported
Publikationstyp: Article
Publikationsstatus: publishedVersion
Erstveröffentlichung: 2014
Die Publikation erscheint in Sammlung(en):An-Institute

Verteilung der Downloads über den gewählten Zeitraum:

Herkunft der Downloads nach Ländern:

Pos. Land Downloads
Anzahl Proz.
1 image of flag of United States United States 27 30,34%
2 image of flag of Germany Germany 26 29,21%
3 image of flag of China China 16 17,98%
4 image of flag of Hong Kong Hong Kong 4 4,49%
5 image of flag of Denmark Denmark 3 3,37%
6 image of flag of No geo information available No geo information available 2 2,25%
7 image of flag of Korea, Republic of Korea, Republic of 2 2,25%
8 image of flag of India India 2 2,25%
9 image of flag of Canada Canada 2 2,25%
10 image of flag of Vietnam Vietnam 1 1,12%
    andere 4 4,49%

Weitere Download-Zahlen und Ranglisten:


Hinweis

Zur Erhebung der Downloadstatistiken kommen entsprechend dem „COUNTER Code of Practice for e-Resources“ international anerkannte Regeln und Normen zur Anwendung. COUNTER ist eine internationale Non-Profit-Organisation, in der Bibliotheksverbände, Datenbankanbieter und Verlage gemeinsam an Standards zur Erhebung, Speicherung und Verarbeitung von Nutzungsdaten elektronischer Ressourcen arbeiten, welche so Objektivität und Vergleichbarkeit gewährleisten sollen. Es werden hierbei ausschließlich Zugriffe auf die entsprechenden Volltexte ausgewertet, keine Aufrufe der Website an sich.