• Valentina M Turanjanin, Laboratory for Thermal Engineering and Energy, Vinča Institute of Nuclear Sciences, Serbia
  • Vukman V Bakić, Laboratory for Thermal Engineering and Energy, Vinča Institute of Nuclear Sciences, Serbia
  • Nenad Miloradović, PUC “Beogradske elektrane”, Belgrade, Serbia
  • Biljana Vučićević, Laboratory for Thermal Engineering and Energy, Vinča Institute of Nuclear Sciences, Serbia
  • Marina P Jovanović, Laboratory for Thermal Engineering and Energy, Vinča Institute of Nuclear Sciences, Serbia

Simulation of combined system for water heating

  • A dynamic simulation was done for hot water production in the summer operating period. The main objective of this paper was to evaluate projects energy benefits of the large-scale solar heating connection to district heating system, for fossil fuels substitution of the hot water production for domestic use during the summer period. Hot water for district heating and domestic use produces in Heating plant 'Cerak' in Belgrade. The heating plant is placed at the suburb of Belgrade and supplying one settlement with hot water only during the summer period. There is exists production and distribution system based on fossil fuel energy, mainly of the natural gas. In the first phase of the project it was planned to install about 5000 m2 of solar collectors.
  • Keywords
    large-scale solar heating, solar domestic water heating, energy benefit
  • Pages
    111 - 120
  • UDC
    697.329:66.011
  • BIBLID
    0350-218X, 35 (2009), 1, 111-120
  • References
    • *** TRNSYS16: A transient system simulation program. Madison, Wisconsin, USA: Solar Energy Laboratory
    • *** (2006) METEONORM 5.0: Global meteorological database for solar energy and applied meteorology. Bern, Switzerland: METEOTEST
    • Duffie, J.A., Beckman, W.A. (2006) Solar engineering of thermal processes. New York, itd: Wiley
    • Kalogirou, S.A. (2004) Solar thermal collectors and applications. Progress in Energy and Combustion Science, 30, 3, 231-295
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