Güneş pili destekli çevre aydınlatma ve sulama sisteminin örnek bir uygulaması

Gelişen teknoloji ve güneş pilleri ile çevre aydınlatma ve sulama sistemleri son yıllarda oldukça yaygın hale gelmiştir Bu çalışmada Eğirdir ilçesi için örnek bir anlama ve çevre aydınlatma sistemi tasarlanmıştır. Sulama yapılacak olan bölgenin özellikleri göz önünde bulundurularak sulamada kullanılacak olan bileşenlerinin tespiti ile çevre aydınlatma sistemi için gerekli hesaplamalar yapılmıştır Çalışmada ayrıca sisteme ait güneş pili şarj kontrol cihazı, inverter, akü gibi bileşenlerin seçimi yapılmıştır.

Recently, garden ligting and irrigation systems have been quite widespread by developing technnlogy and solar cells. In this study, a sample of irrigation and garden lighting system have been projected for Eğirdir district. By considering the characteristics of the district which is irrigated, required calculations have been done for garden lighting system by determining the equipments which will be used lor irrigation. Furthermore, in the study, the equipments used as the solar cell whiih belongs to the system, charge controller,inverter and battery have been chosen.

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  • 1. Taşkıran, U., Akış Kanallarında Kirlilik Problemi, Osmangazi Üniversitesi, Fen Bilimleri Enstitüsü, Makina Mühendisliği Bölümü, Yüksek Lisans Tezi, Eskişehir, 2005
  • 2. Mansoori, G.Ali., Deposition and Fouling of Heavy Organic Oils and Other Compounds, Department of Chemical Engineering, University of Illinois, Chicago, USA, 2001
  • 3. Dağsöz, A.K., Sıcak Sulu Kalorifer Tesisat , Demirdöküm Teknik Yayınları No:6, Mas Matbacılık, İstanbul,1998
  • 4. Jaluria, Y., Design and Optimization of Thermal Systems, McGraw Hill nternational Eddition, Singopore, 1998
  • 5. FLUENT Inc., Fluent 6.1 Tutorial and User' s Guide, Lebanon, 2003
  • 6. Incropera, F.P., Dewitt, D.P., Isı ve Kütle Geçişinin Temelleri , Literatür Yayıncılık, Beyoğlu- İstanbul, 2001
  • 7. Andritos, N., Karabelas, A.J., Calcium Carbonate Scaling in a Plate Heat Exchanger in the Presence of Particles, International Journal of Heat and Mass Transfer, Thessaloniki, Greece, 2003
  • 8. Yiantsios, S.G., Karabelas, A.J., The Effect of Gravity on The Deposition of Micron Sized Particles on SmoothSurfaces, International Journal of Multiphase Flow, Thessalonokki, Greece, 1997
  • 9. Brahim, F., Augustin, W., Bohnet, M., Numerical Simulation of the Fouling process, International Journal of Thermal Sciences, Braunschweig, Germany, 2002
  • 10. Siegel, J., Carrey, V.P., Fouling of HVAC Fin and Tube Heat Exchangers, Lawrance Berkeley National Laboratory, Berkeley, USA, 2001
  • 11. Siegel J.A., Nazaroff, W.W., Predicting Particle Deposition on HVAC Heat Exchangers, Atmospheric Environment, USA, 2003
  • 12. Adamczyk, Z., Warszynski, P., Warszynska, L.S., Weronski, P., Role of convection in particle deposition at solid surfaces, Colloids and Surfaces A., Cracow, Poland, 2000
  • 13. Chamka, A.J., Pop, I., Effect of Thermophoresis Particle Deposition In Free Convection Boundry Layer From A Vertical Plate Embedded In A Porous Medium, 2004
  • 14. Tandon, P., Adewumi, M.A., Particle Deposition From Turbulent Flow in a Pipe, Journal of Aerosol Science, Philadelphia, USA, 1997
  • 15. van de Ven, T.G.M., The Capture of Colloidal Particles on Surfaces and in Porous Material: Basic Principles, Colloids and Surfaces A., Montreal, Canada, 1998