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2009 | 115 | 4 | 827-833

Article title

Influence of Physical Characteristics οf Flat Aluminum Concentrators on Energy Efficiency of PV/Thermal Collector

Content

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Languages of publication

EN

Abstracts

EN
In this paper the results of the influence of physical characteristics of flat plate solar radiation concentrators made of Al sheet and Al foil on energy efficiency of PV/thermal collector are presented. The measurements results obtained by means of scanning electron microscope, reflectance and chemical composition of solar radiation concentrators are given. Optimal position of solar radiation concentrators and appropriate thermal and electrical energy of PV/thermal collector were determined. Total generated thermal and electrical energy during the day by PV/thermal collector with concentrators in optimal position are higher than the total generated thermal and electrical energy obtained by PV/thermal collector without concentrators.

Keywords

EN

Contributors

author
  • Faculty of Science and Mathematics, Physics Department, University of Nis, P.O. Box 224, 18 000 Nis, Serbia
author
  • Faculty of Science and Mathematics, Physics Department, University of Nis, P.O. Box 224, 18 000 Nis, Serbia
author
  • Faculty of Science and Mathematics, Physics Department, University of Nis, P.O. Box 224, 18 000 Nis, Serbia

References

  • 1. E.C. Kern Jr., M.C. Russell, in: Proc. 13th IEEE Photovoltaic Specialists, Washington DC 1978, IEEE, New York 1978, p. 1153
  • 2. L.W. Florschuetz, Solar Energy 22, 361 (1979)
  • 3. T. Takashima, T. Tanaka, T. Doi, J. Kamoshida, T. Tani, T. Horigome, Solar Energy 52, 241 (1994)
  • 4. T. Bergene, O.M. Lovvik, Solar Energy 55, 453 (1995)
  • 5. H.A. Zondag, D.W. De Vries, W.G.J. Van Helden, R.J.C. Van Zolingen, A.A. Van Steenhoven, Solar Energy 74, 253 (2003)
  • 6. K. Qiu, A.C.S. Hayden, Solar Energy 74, 489 (2003)
  • 7. W. Durisch, B. Bitnar, F. von Roth, G. Palfinger, Solar Energy 75, 11 (2003)
  • 8. Y.B. Assoa, C. Menezo, G. Fraisse, R. Yezou, J. Brau, Solar Energy 81, 1132 (2007)
  • 9. G. Fraisse, C. Menezo, K. Johannes, Solar Energy 81, 1426 (2007)
  • 10. J.K. Tonui, Y. Tripanagnostopoulos, Solar Energy 81, 498 (2007)
  • 11. J.K. Tonui, Y. Tripanagnostopoulos, Solar Energy 82, 1 (2008)
  • 12. S. Dubey, G.N. Tiwari, Solar Energy 82, 602 (2008)
  • 13. A.A. Al-Baali, Solar Wind Technol. 3, 241 (1986)
  • 14. H.P. Garg, R.K. Agarwal, A.K. Bhargava, Energy Conv. Manag. 32, 543 (1991)
  • 15. M. Brogren, M. Ronnelid, B. Karlson, in: Proc. 16th European PV Solar Energy Conf., Glasgow 2000, Eds. James & James, Vol. III, Earthscan, London 2001, p. 2121
  • 16. Y. Tripanagnostopoulos, Th. Nousia, M. Souliotis, P. Yianoulis, Solar Energy 72, 217 (2002)
  • 17. Y. Tripanagnostopoulos, M. Souliotis, R. Battisti, A. Corrado, Prog. Photovolt. Res. Appl. 13, 235 (2005)
  • 18. Y. Tripanagnostopoulos, Solar Energy 81, 1117 (2007)

Document Type

Publication order reference

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YADDA identifier

bwmeta1.element.bwnjournal-article-appv115n417kz
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