BibTex RIS Kaynak Göster

Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey

Yıl 2014, Cilt: 4 Sayı: 4, 924 - 928, 01.12.2014

Öz

In this paper the possible optimum fixed and adjustable tilt angles for solar collectors are determined by using Yypical Meteorological Data set for nine main provinces of Turkey. the tilt angle types considered in this paper are monthly adjustment, seasonal adjustment, semi annual adjustment, optimum fixed angle and an angle equals to the latitude of the area. as a result of this paper it has been obseved that up to 6.9 % more solar radiation can be collected by using a monthly adjustment of collectors in comparison with latitude tilt angles. The optimum angles have found to range from a minimum of 2 degrees up to 57 degrees. the seasonal adjustment angles have been found to be between 9 and 48 degrees. the semi annual angles are from 18 to 28 degrees less than the latitude of the area.

Kaynakça

  • A. Adell, “Determination of the optimum inclination of a flat solar collector in function of latitude and local climatic data”, revue phys. Appl. 17, pp. 569 -576, September 1982.
  • A. Khaligh and O.C.Onar, Energy Harvesting, Taylor and Francis Group: CRC press, 2010, pp.1
  • A. K. Yadav and S.S.Chandel, “Tilt angle optimization to maximize incident solar radiation: A Review”, Renewable and Sustainable Energy Reviews 23, pp. 503 – 514, 2013.
  • A. Shariah, M.A Al-Akhras, I.A. Al-Omari ,“Optimizing the tilt angle of solar collectors”, Renewable Energy 26 , pp 587 - 597, 2001.
  • JA. Duffie, WA. Beckham, Solar Engineering of Thermal Processes, 4th ed., Wiley, 2013, pp. 113- 114, 11 – 40.
  • MJ Ahmad and GN. Tiwari, “Optimization of Tilt Angle for Solar Collector to Receive Maximum Radiation”, The Open Renewable Energy Journal, vol. 2, pp. 19 – 24, 2009.
  • NREL/TP-581-43156, Users Manual for TMY3 Data Sets, National Renewable Energy Laboratory, 2008.
  • R. Foster, M. Ghassemi and A. Costa, Solar Energy, Taylor and Francis Group: CRC Press, 2010, pp. 1.
  • S. A. Keshavarz, P. Talebizadeh, S. Adalatia, M. A. Mehrabian, and M. Abdolzadeh , “Optimal Slope- Angles to Determine Maximum Solar Energy Gain for Solar Collectors Used in Iran”, International Journal of Renewable Energy Resource, vol. 2, pp. 665 – 673, 2012.
Yıl 2014, Cilt: 4 Sayı: 4, 924 - 928, 01.12.2014

Öz

Kaynakça

  • A. Adell, “Determination of the optimum inclination of a flat solar collector in function of latitude and local climatic data”, revue phys. Appl. 17, pp. 569 -576, September 1982.
  • A. Khaligh and O.C.Onar, Energy Harvesting, Taylor and Francis Group: CRC press, 2010, pp.1
  • A. K. Yadav and S.S.Chandel, “Tilt angle optimization to maximize incident solar radiation: A Review”, Renewable and Sustainable Energy Reviews 23, pp. 503 – 514, 2013.
  • A. Shariah, M.A Al-Akhras, I.A. Al-Omari ,“Optimizing the tilt angle of solar collectors”, Renewable Energy 26 , pp 587 - 597, 2001.
  • JA. Duffie, WA. Beckham, Solar Engineering of Thermal Processes, 4th ed., Wiley, 2013, pp. 113- 114, 11 – 40.
  • MJ Ahmad and GN. Tiwari, “Optimization of Tilt Angle for Solar Collector to Receive Maximum Radiation”, The Open Renewable Energy Journal, vol. 2, pp. 19 – 24, 2009.
  • NREL/TP-581-43156, Users Manual for TMY3 Data Sets, National Renewable Energy Laboratory, 2008.
  • R. Foster, M. Ghassemi and A. Costa, Solar Energy, Taylor and Francis Group: CRC Press, 2010, pp. 1.
  • S. A. Keshavarz, P. Talebizadeh, S. Adalatia, M. A. Mehrabian, and M. Abdolzadeh , “Optimal Slope- Angles to Determine Maximum Solar Energy Gain for Solar Collectors Used in Iran”, International Journal of Renewable Energy Resource, vol. 2, pp. 665 – 673, 2012.
Toplam 9 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Articles
Yazarlar

Yohannes Berhane Gebremedhen Bu kişi benim

Yayımlanma Tarihi 1 Aralık 2014
Yayımlandığı Sayı Yıl 2014 Cilt: 4 Sayı: 4

Kaynak Göster

APA Gebremedhen, Y. B. (2014). Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey. International Journal Of Renewable Energy Research, 4(4), 924-928.
AMA Gebremedhen YB. Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey. International Journal Of Renewable Energy Research. Aralık 2014;4(4):924-928.
Chicago Gebremedhen, Yohannes Berhane. “Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey”. International Journal Of Renewable Energy Research 4, sy. 4 (Aralık 2014): 924-28.
EndNote Gebremedhen YB (01 Aralık 2014) Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey. International Journal Of Renewable Energy Research 4 4 924–928.
IEEE Y. B. Gebremedhen, “Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey”, International Journal Of Renewable Energy Research, c. 4, sy. 4, ss. 924–928, 2014.
ISNAD Gebremedhen, Yohannes Berhane. “Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey”. International Journal Of Renewable Energy Research 4/4 (Aralık 2014), 924-928.
JAMA Gebremedhen YB. Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey. International Journal Of Renewable Energy Research. 2014;4:924–928.
MLA Gebremedhen, Yohannes Berhane. “Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey”. International Journal Of Renewable Energy Research, c. 4, sy. 4, 2014, ss. 924-8.
Vancouver Gebremedhen YB. Determination of Optimum Fixed and Adjustable Tilt Angles for Solar Collectors by Using Typical Meteorological Year Data for Turkey. International Journal Of Renewable Energy Research. 2014;4(4):924-8.