Optimal Slope-Angles to Determine Maximum Solar Energy Gain for Solar Collectors Used in Iran

Optimal Slope-Angles to Determine Maximum Solar Energy Gain for Solar Collectors Used in Iran

The aim of this paper is providing atlases to determine maximum solar energy gain and optimum slope angle of solar collectors for Iran. To achieve this purpose, first, the daily, monthly, seasonally and yearly optimum slope and azimuth angles of solar collectors are determined for 30 Iranian cities and the gain of energy is calculated in the mentioned conditions. Then, the atlas of the optimum slope angle and the contour atlas of the maximum energy gain is provided. The Geographic Information System (GIS) is used to outline the maps. These atlases are essentials tools to find the best location for constructing different solar systems. The results show that the energy gain of the collector when it is adjusted at the daily optimum slope angle is almost the same compared with the case at the monthly optimum slope angle. Therefore, the map is provided for the energy gain when the collectors are mounted at the monthly optimum slope angle. The map of optimum slope angle is outlined for the fixed collector used for the entire year due to the high use of fixed collectors. Furthermore, the results show that Iran can be divided into five zone and the areas with the same latitude and climate have almost the same optimum slope angle.

___

  • H. Heywood, “Operating experience with solar water heating”, IHVE, vol. 39, pp. 63-99, 1971.
  • P.J. Lunde, Solar thermal engineering, John Wiley and Sons Inc, New York, 1980.
  • J.A. Duffie, and W.A. Beckman, Solar engineering of thermal processes, John Wiley and Sons Inc., New York, G. QIU, and S.B. RIFFAT, “Optimum tilt angle of solar collectors and its impact on performance”, International Journal of Ambient Energy, vol. 24, pp. 13-20, 2003.
  • N. Nijegorodov, K.R.S. Devan, and P.K. Jain, “Atmospheric transmittance models and an analytical method to predict the optimum slope on an absorber plate”, Renewable Energy, vol. 4, pp. 525-530, 1997.
  • V.H. Moncos, “Optimum tilt angle and orientation for solar collectors in Assiut/Egypt”, Renewable Energy, vol. (3), pp. 291-298, 1994.
  • M. Abdulaziz, “Optimum tilt angle for solar collection systems”, International Journal of Solar Energy, vol. 14, pp. 191-202, 1994.
  • L.E. Hartley, J.A. Martinez-Lozano, M.P. Utrillas, F. Tena, and R. Pedro, “The optimization of the angle of inclination of a solar collector to maximize the incident solar radiation”, Renewable Energy, vol. 6, pp. 180-298, M.T. Oladiran, “Mean global radiation captured by inclined collectors at various surface azimuth angles in Nigeria”, Applied Energy, vol. 52 (4), pp. 317-330, 1995.
  • M. Azmi, M. Yakup, and A.Q. Malik, “Optimum tilt angle and orientation for solar collector in Brunei Darussalam”, Renewable Energy, vol. 24, pp. 223-234, A. Shariah, M.A. Al-Akhras, and I.A. Al-Omari, “Optimizing the tilt angle of solar collectors”, Renewable Energy, vol. 12, pp. 587-598, 2002.
  • R. Tang, and T. Wu, “Optimal tilt-angles for solar collectors used in China”, Applied Energy, vol. 79, pp. 248, 2004.
  • K. Ulgen, “Optimum tilt angle for solar collectors”, EnergySources, Part A: Recoveryy, Utilization and Environmental Effects, vol. 28, pp. 1171-1180, 2006.
  • H.K. Elminir, A.E. Ghitas, F. El-Hussainy, R. Hamid, M.M. Beheary, and K.M. Abdel-Moneim, “Optimum solar flat plate collector slope: Case study for Helwan, Egypt”, Energy Conversion and Management, vol. 47, pp. 624-637, 2006.
  • K.K. Gopinathan, N.B., Maliehe, and M.I. Mpholo, “Study on the intercepted insulation as a function of slope and azimuth of the surface”, Energy, vol. 32, pp. 213- , 2007.
  • H. Gunerhan, and A. Hepbasli, “Determination of the optimum tilt angle of solar collectors for building applications”, Building and Environment, vol. 42, pp. 783, 2007.
  • K. Skeiker, “Optimum tilt angle and orientation for solar collectors in Syria”, Energy Conversion and Management, vol. 50, pp. 2439-2448, 2007.
  • P. Talebizadeh, M. Abdolzadeh, and M. A. Mehrabian, “Determination of optimum slope angles of solar collectors based on new correlations”, Energy Sources, Part A, vol. 33, pp.1567-1580, 2011.
International Journal Of Renewable Energy Research-Cover
  • ISSN: 1309-0127
  • Başlangıç: 2015
  • Yayıncı: İlhami ÇOLAK
Sayıdaki Diğer Makaleler

Challenges of Grid Integration of Wind Power on Power System Grid Integrity: A Review

Temitope Raphael Ayodele, Adiasa Jimoh, Josial L Munda, Agee J Tehile

Use of a Hybrid Solar Oven in Housing in Dry Climates: An Experimental Study of Thermal Performance

Arturo F. Buigues NOLLENS, Esteban O. ROJOS, Marcelo O. FARİELLO

Control the Flywheel Storage System by Fuzzy Logic Associated With the Wind Generator

Bouchafaa FARİD, Hamzaoui IHSSEN, Talha AZİZ, A. TALHA

Variable Structure Control Applied in Wind Turbine Based on Induction Generator

Abdel Ghani Aissaoui, Ahmed Tahour, Mohamed Abid, Najib Essounbouli, Frederic Nollet, Moulay Idriss Chergui

Consideration of Operating Characteristics for Bi-directional LLC Resonant Converter

Sihun YANG, Seiya ABE, Toshiyuki ZAİTSU, Junichi YAMAMOTO, Masahito SHOYAMA, Tamotsu NİNOMİYA

Seasonal Variation of Internal Parameters of Amorphous Silicon (a-Si) Thin Film Photovoltaic Modules

Rustu EKE, Sener OKTİK

Solar Tilt Measurement of Array for Building Application and Error Analysis

Abhishek AGARWAL, Vineet Kumar VASHİSHTHA, S. N. MİSHRA

Optimal Slope-Angles to Determine Maximum Solar Energy Gain for Solar Collectors Used in Iran

Seyyed Ali Keshavarz, Pouyan Talebizadeh, Saeed Adalati, Mozaffar Ali Mehrabian, Morteza ABDOLZADEH

Optimized Design of Rotor Blade for a Wind Pump

Prasad SS, Virupaxi AURADİ

Modeling and Performance Analysis of Microturbine Generation System in Grid Connected/Islanding Operation

Sanjeev K NAYAK, Dattatreya N GAONKAR