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Solar air heater with heat storage

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Experimental investigations of solar air heater with box-type absorber and with heat storage unit has been performed. The heat storage unit was filled with a commercial grade paraffine wax and its phase changes were applied to store the heat during operation of the air heater. Amounts of energy delivered by this air heater as well as by similar air heater but without heat storage unit were measured. Initial results revealed that the energy amounts delivered by solar air heater with heat storage unit are bigger than those delivered by solar air heater without heat storage unit.
Rocznik
Tom
Strony
54--59
Opis fizyczny
Bibliogr. 14 poz., il.
Twórcy
autor
  • Instytut Inżynierii Chemicznej, Polska Akademia Nauk, Gliwice
Bibliografia
  • de Giorgi G., Fumagalli S., Rizzi G., K.Sharma V., 1991, Design, development and experimental performance of solar collector-storage system for space heating applications, Energy Conversion Mgmt, 31,75.
  • Fath H.E.S., 1995, Thermal performance of a simple design solar air heater with built-in thermal energy storage system, Renew. Energy, 6, 1033.
  • Gupta D., Solanki S.C., Saini J.S., 1997, Thermohydraulic performance of solar air heaters with roughened absorber plates, Solar Energy, 61, 33.
  • Hoogendoorn C.J., Bart G.C.J., 1992, Performance and modelling of latent heat stores, Sol. Energy, 46, 53.
  • Itaya Y., Adachi K., Mizumo M., Hasatani M., 1989, Heat transfer and heat storage characteristics of partially semitransparent-material packed-bed solar air heater, J. Chemical Engng Japan, 22, 11.
  • Karim M.A., Hawlader M.N.A., 2006, Performance investigation of flat plate, v-corrugated and finned air collectors, Energy, 31, 452.
  • Matrawy K.K., Theoretical analysis for an air heater with a box-type absorber, 1998, Sol. Energy, 63, 191.
  • Methods of Testing to Determine the Thermal Performance of Solar Collectors, ASHRAE Standard, ANSI/ASHRAE 93-1986 (RA 91), Atlanta, 1991.
  • Metwally M.N., Abou-Ziyan H.Z, El-Leathy A.M., 1997, Performance of advanced corrugated-duct solar air collector compared with five conventional designs, Renewable Energy, 10, 519
  • Mohamad A.A., 1997, High efficiency solar air heater, Sol. Energy, 60, 71.
  • Piao Y., Hauptmann E.G., M.Iqbal, 1994, Forced convective heat transfer in cross-corrugated solar air heaters, Trans. ASME, J, Sol. Energy Engng., 116,212.
  • Thakur N.S.D., Saini J.S., Solanki S.C., 2003, Heat transfer and friction factor correlations for packed bed solar air heater for a low porosity system, Sol. Energy, 74, 319.
  • Verma S.K, Prasad B.N., 2000, Investigation for the optimal thermohydraulic performance of artificially roughened solar air heaters, Renewable Energy, 20, 198.
  • Yeh H.M, Ho Ch.D., Hou J.Z., 1999, The improvement of collector efficiency in solar air heaters by simultaneously air flow over and under the absorbing plate, Energy, 24, 85.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPBA-0003-0009
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