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The use of IR thermography for testing the operation parameters of water radiant ceiling systems for heating

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper shows the possibility of the use of IR thermography for testing the operational parameters of water radiant ceiling systems for heating. The study showed positive results regarding the efficiency of different types of ceiling panels in a function of the level of homogeneous surface temperature distribution. Experimental results were supplemented by theoretical calculations performed with the use of a special equation originally dedicated to sun collector calculations.
Wydawca
Rocznik
Strony
228--232
Opis fizyczny
Bibliogr. 13 poz., rys., wykr., wzory
Twórcy
autor
  • AGH University of Science and Technology, Mickiewicza Av. 30, 30-059 Krakow
autor
  • AGH University of Science and Technology, Mickiewicza Av. 30, 30-059 Krakow
autor
  • AGH University of Science and Technology, Mickiewicza Av. 30, 30-059 Krakow
  • AGH University of Science and Technology, Mickiewicza Av. 30, 30-059 Krakow
Bibliografia
  • [1] Imanari T., Omori T., Bogaki K.: Virtual instrument for resistance benchmark measurement. Energy and Buildings, vol. 30, pp. 167-175, 1999.
  • [2] Yost A., Barbour E., Watson R.: An evaluation of thermal comfort and energy consumption for a surface mounted ceiling radiant panel heating system, ASHRAE Transactions, vol. 101, pp. 1221-1235, 1995.
  • [3] Stetiu C.: Energy and peak power potential of radiant cooling systems in US commercial buildings. Energy and Buildings, vol. 30, pp. 127-138, 1999.
  • [4] Dovjak M., Shukuya M., Krainer A.: Exergy analysis of conventional and low exergy systems for heating and cooling of near zero energy buildings. Strojniski vestnik – Journal of Mechanical Engineering, vol. 58, pp. 453–461, 2012.
  • [5] Matsuki N., Nakano Y., Miyanaga T., Yokoo N., Oka T.: Performance of radiant cooling system integrated with ice storage, Energy and Buildings, vol. 30, pp. 177- 183, 1999.
  • [6] Takeda H., Senuma H., Kubota Y.: Study on ceiling radiation cooling/heating system, comparison between ceiling cooling/heating system and conventional system under the same building specifications, Journal of Architecture and Building, vol. 11, pp. 145- 150, 2000.
  • [7] Hao X, Zhang G, Chen Y, Zou S, Moschandreas D.J.: A combined system of chilled ceiling, displacement ventilation and desiccant dehumidification. Building and Environment, vol. 42, pp. 3298-3308, 2007.
  • [8] Olesen B. W.: Radiant floor heating in theory and practice. ASHRAE, J, vol. 44, pp. 19-26, July 2002.
  • [9] Todorovic B.: Design of Installations for Central Heating. Masinski Fakultet Beograd, Beograd, 2004 (in Serbian).
  • [10] Rahimi M., Sabernaeemi A.: Experimental study of radiation and free convection in an enclosure with a radiant ceiling heating system. Energy and Buildings, vol. 42, pp. 2077-2082, 2010.
  • [11] Causone F., Corgnati S. P., Filippi M., Olesen B.W.: Experimental evaluation of heat transfer coefficients between radiant ceiling and room. Energy and Buildings, vol. 41, pp. 622–628, 2009.
  • [12] Anastaselos D., Theodoridou I., Papadopoulos A.M., Hegger M.: Integrated evaluation of radiative heating systems for residential buildings. Energy, vol. 36, pp. 4207- 4215, 2011.
  • [13] John A. Duffie, William A. Beckman. Solar engineering of thermal processes, John Wiley & Sons, Second edition (Chapter 6.5)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1f8e5095-9303-4e12-93be-c19ac70a48f7
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