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Tytuł artykułu

Estimation of Solar Energy Availability in Maha Sarakham, Thailand

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Analiza i prognozowanie możliwości systemu solarnego w Maha Sarakham w Tajlandii
Języki publikacji
EN
Abstrakty
EN
Abstract. Availability of solar energy is crucial for most technological solar applications. The objective of this study is to predict monthly average and global solar radiation patterns on Maha Sarakham horizontal surface of Thailand. Two correlation equations have been successfully developed, one from Angstrom model and the other from Liu-Jordan model, with the minimum and maximum clearness index 0.45 and 0.65 for the equation derived from Angstrom model and 0.30 and 0.95 for the equation derived from Liu-Jordan model. Data of sunshine hours as well as global and diffuse solar radiation was collected at the location and was predicted using equations developed from corresponding models. After validation procedure was conducted, the empirical data was then compared to predicted data. It can be concluded that the developed equations can be used to estimate the diffuse and global solar radiation and also indicate the solar energy availability at Maha Sarakham of Thailand with satisfactory level. This obtained knowledge and information can be applied to other locations with the same geographical conditions as well as used in further researches.
PL
Celem artykułu jest prognozowanie przeciętnych miesięcznych i globalnych możliwości systemu solarnego w Tajlandii w miejscowości Maha Sarakham. Opracowano równania korelacyjne bazujące na modelach Angstroma i Liu-Jordana z indeksem przejrzystości powietrza 0.45 – 0.65 (Angstrom) i 0.30 – 0.95 (Liu-Jordan). Otrzymane równania pozwalają na prognozowanie wydajno sci systemów słonecznych także w innych geograficznych warunkach.
Rocznik
Strony
118--121
Opis fizyczny
Bibliogr. 15 poz., rys., tab., wykr.
Twórcy
autor
  • Mahasarakham University Khamriang, Kantharawichai, Maha Sarakham 44150 Thailand
  • Mahasarakham University Khamriang, Kantharawichai, Maha Sarakham 44150 Thailand
autor
  • Mahasarakham University Khamriang, Kantharawichai, Maha Sarakham 44150 Thailand
  • Mahasarakham University Khamriang, Kantharawichai, Maha Sarakham 44150 Thailand
Bibliografia
  • [1] Ibrahim SMA. Predicted and measured global solar radiation in Egypt. Solar Energy 35(2):185-188, 1985.
  • [2] Exell RHB. The intensity of solar radiation. King Mongkut’s University of Technology Press,Thornburi: 549-554, 2000.
  • [3] Angstrom,A.S.,Solar and Terrestrial radiation. Meteo-rological Society. 50:.121-126, 1924.
  • [4] Hirunlabh, J., Santisirisomboon, J. and Namprakai, P., Assessment of Solar Radiation for Thailand. Proceedings of International Workshop: Calculation Methods for Solar Energy Systems, 29-30.09, University of Parpignan, France,1994.
  • [5] Laosuwan,T., Pattanasethanon,S., and Sa-Ngiamvibool W., Using GIS, RS for soil erosion mapping. Available from: http://geospatialworld.net/ Regions/ArticleView.aspx?aid=30407#sthash.j9E5Cqqp.dpuf [Last accessed on 2014 June 12].
  • [6] Pattanasethanon S, Lertsatithanakorn C, Atthajari yakul S, Soponrpnnarit S., All sky modeling daylight availability and illuminance/irradiance on horizontal plane for Mahasarakham, Thailand. Energy conver-sion and Management,48(5):1601- 1614, 2007.
  • [7] Igbal M., An introduction to solar radiation. Academy press. New yoke: 6-51,1983.
  • [8] Klein, S.A., Calculation of Monthly Average isolations on Tilted Surfaces, Solar Energy. 19: 307-311, 1977.
  • [9] De Cario, F., Groppi, C., Festa, R., and Rao, C.F.R., A procedure to Obtain Global Solar Radiation Maps from Sunshine Duration at isolated Stations in a Region with a Complex Orography, Solar Energy, 37: 91-108, 1986.
  • [10] Laosuwan, T., Pattanasethanon, S., Sa-ngiamvibool, W., Automated Cloud Detection of Satellite Imagery Using Spatial Modeler Language and ERDAS Macro Language. IETE Technical Review, 30: 183-90, 2013
  • [11] Liu, B.Y.H. and Jordan, R.C. The interrelationship and characteristic distribution of direct, diffuse and total solar radiation. Solar Energy 4, (1),1960.
  • [12] Enrique R, Solar Alfonso, Robledo Luis. Statistical assessment of a model for global illuminanec on inclined surface from horizontalglobal illuminance. Energy Convers Manage,43: 693- 708, 2002.
  • [13] Kjaersgaard, J.H., Plauborg, F.L., and Hansen, S., Comparison of models for calculating daytime long-wave irradiance using long term data set. Agricultural and Forest Meteorology 143:49–63, 2006.
  • [14] Gueymard C.A. and Myers D.R., Solar radiation measurement: Progress in radiometry for improved modeling, in Modeling Solar Radiation at the Earth Surface, V. Badescu, Ed., Springer, 2008.
  • [15] Anusasananan, P., Masiri, I., Janjai, S., Comparison of clear sky models for estimating downward longwave radiation in Thailand. 5th International Conference on Sustainable Energy and Environment (SEE 2014): Science, Technology and Innovation for ASEAN Green Growth, Bangkok, Thailand, 2014.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dc983cf1-9aa8-45c9-9120-4cbfe9661ddb
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