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Free convection across air gap between corrugated and flat plates

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Natural convection heat transfer across air gap between a lower hot semicircular corrugated plate and an upper cold flat plate has been studied experimentally for a range of corrugation aspect ratio (air gap to the amplitude of corrugation), 3.5 < A < 9.5, inclination angle, 0^0 < 0 < 45^0, and Rayleigh number, 3.4 x 10^4 Ra < 2.0 x 10^6. A corrugation plate has been formed with the multi-semicircular bars. The heat transfer coefficients are found to be a strong function of corrugation aspect ratio, inclination angle and Rayleigh number. The results are compared with the available information in the literature on natural convection and found to be about 10% and 20% higher than those for a gap between vee corrugated and flat plate and between two flat plates, respectively. Finally, a correlation has been developed for this configuration for a range of parameters studied herein.
Rocznik
Strony
39--53
Opis fizyczny
Bibliogr. 13 poz.,Rys., tab.,
Twórcy
autor
  • Mechanical Engineering Department, Bangladesh University of Engineering & Technology, Dhaka-1000, Bangladesh
autor
  • Mechanical Engineering Department, Bangladesh University of Engineering & Technology, Dhaka-1000, Bangladesh
autor
  • Mechanical Engineering Department, Bangladesh University of Engineering & Technology, Dhaka-1000, Bangladesh
autor
  • Mechanical Engineering Department, Bangladesh University of Engineering & Technology, Dhaka-1000, Bangladesh
  • Mechanical Engineering Department, Bangladesh University of Engineering & Technology, Dhaka-1000, Bangladesh
Bibliografia
  • [1] GLOBE S., AND DROPKIN D.: Natural convection heat transfer in liquids confined between two horizontal plates, J. of Heat Transfer, 81(1959), 24.
  • [2] BUCHBERG H., CATTON I., AND EDWARDS D. K.: Natural convection in enclosed spaces - A review of application to solar energy collection, ASME Paper, 1974, 74- WA/HT-12.
  • [3] HOLLANDS K. G. T., UNNY T. E., RAITHBY G. D., AND KONICEK L.: Free con- vection heat transfer across inclined air layers, J. of Heat Transfer, 98(1976), 2, 189-193.
  • [4] ELSHERBING S. M., HOLLANDS K. G. T., AND RAITHBY G. D.: Free convection across inclined air layers with one surface vee corrugated, Heat Transfer Solar En- ergy Systems, Howell, J. R., and Min., T., (eds.), American Society of Mechanical Engineers, New York 1977.
  • [5] AKHANDA M. A. R., AND LATIFA B.: Natural convection heat transfer from hot vee corrugated plates to a cold flat plate, Proc. of the 8 Asian Congress of Fluid Mechanics, Shenzhen, China, 1999, 607-610.
  • [6] CHOWDHURY F. M., AND AKHANDA M. A. R.: Natural convection heat transfer from hot trapezoidal corrugated plate to a cold flat plate, Institution of Engineers, India, Journal-M6, 74(1994), 133-138.
  • [7] AKHANDA M. A. R., AND KABIR H.: An experimental investigation of natural convection heat transfer from hot corrugated plate to a flat plate, Proc. of the 1 ISHMT-ASME Heat and Mass Transfer Conference and the 12 National Heat and Mass Transfer Conference, Bhabes Atomic Research Centre, Bombay 1994, India, 337-342.
  • [8] AKHANDA M. A. R., AND CHOWDHURY F. M.: Natural convection heat transfer from a hot rectangular and a square corrugated plates to a cold flat plate, Inter. Journal of Thermal and Fluid Sciences, 9(2000), 3, 243-248.
  • [9] SNOEK C. W., AND TARASUK J. D.: Heat transfer from inflatable structure, ASME Paper, No. 75-WA/HT-97, Nov. 1975.
  • [10] MCADAMS W. H.: Heat Transmission, 3rd ed., McGraw-Hill, New York 1954.
  • [11] JALURIA Y., AND GEBHART B.: On the buoyancy-induced flow arising from a heated hemisphere, J. of Heat Transfer, 18(1975), 415-431.
  • [12] SREWART W. T., AND JOHNSON J. C.: Experimental natural convection heat trans- fer from spherical natural zones, J. of Heat Transfer, 107(1985), 463-465.
  • [13] HOLLANDS K. G. T.: Directional selectivity, emittance, and absorptance properties of Vee-Corrugated surfaces, Solar Energy, 7(1963), 3, 108-116.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0379-2497
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