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Akışkan Yatak-Dış Duvar Isı Transferi

Year 1987, Volume: 1 Issue: 5, 213 - 223, 01.10.1987

Abstract

Bir
akışkan yatağın tasarımında veya değerlendirilmesinde yatak-dış duvar ısı
transferi önemli bir yer tutar. Isı transfer yüzeyleri yatak duvarlarında
bulunan yataklarda ısı transferinin fazla olması, buna karşılık ısı transfer
yüzeyleri aslen yatak içersine daldırılmış bulunan yataklarda da dış
duvarlardan olu-şan ısı kayıplarının en az olması arzulanır. Son yıllarda ısı
transfer yüzeylerinin genellikle yatak duvarlarında yer alması çalışmaları bu
yönde yoğunlaştırmaktadır. Ancak literatürdeki ampirik denklemler yatak boyunca
ortalama bir değer verdiklerin-den yetersiz kalmakta, çoğu kez de birbirleri
ile oldukça farklı sonuçlara ulaşmaktadırlar. Bu çalışmada önce yatak-diş duvar
ısı transfer modelleri özetlenmekte, ampirik denklemlere değinilmekte, sonra da
geliştirilen bir sayısal yöntem tanıtılarak iki örnek çözüm üzerinde
mukayeseler yapılmaktadır. 

References

  • 1 Kılkış, B., Calculation of Local Bed to Wall Heat Transfer in a Fluidized Bed, U.S. Morgantown Energy Technology Center, Technical Report, August 1985.
  • 2 Kılkış, B., Development of a Computer Program to Predict the Wall to Bed Heat Transfer in Co-Operation with the S' code, U.S. Morgantown Energy Technology Center, Technical Report, August 1982.
  • 3 Chen,P.J. ve diğerleri, Computer Modelling of Coal Gasification Reactors, U.S. Dept. of Energy, Technical Report, No. DOEİET/10242-TI, vol.1-4, 1981.
  • 4 Zabrodsky, S.S., Hydrodynamics and Heat Transfer in Fluidized Beds, MIT Press London, 1986.
  • 5 Mickley, H.S. ve Fairbanks, D.F., Mechanism of Heat Transfer to Fluidized-Beds, AIChE J., 3 (1955), 374-384.
  • 6 Leva,M. ve Grummer,M., A Correlation of Solids Turnover in Fluidized Systems, Chem.Eng.Prog., 48 (1952), 6, 307-312.
  • 7 Dow,M.W. ve Jakob,M., Heat Transfer Between a Vertical Tube and a Fluidized Air Solid Mixture, ChenkEng.Prog-, 47 (1951), 12, 637-648.
  • 8 Levenspiel, O. ve Walton, J.S., Chem.Eng.Prog.Symp., Series, 50 (1950), 9, 1-3.
  • 9 Gorelik, A.G., Mechanism of Heat Exchange Between Surfaces and Fluidized Bed, J.Eng.Phys., 13 (1967), 6, 495-498.
  • 10 Dixon, A.G., Thermal Resistance Models of Packed Bed Effective Heat Transfer Parameters, AIChE J., 31 (1985), 5.
  • 11 Kondukov, L.I. ve diğerleri, Inv. on Hydrodynamics of Fluidized-Bed as a Component determining Heat and Mass Transfer, Fifth Int.Heat T.Conf.Proceedings, 54-58, Soc. of Chem.Eng., Tokyo, 1974.
  • 12 Glicksman, L.R. ve Decker, N.A., Design Relationships for Predicting Heat Transfer to Tube Bundles in Fluidized Bed Combustors, Sixth Int.Conlon Fluidized-Bed Combustion Proceedings, 1152-1158, 1980.
  • 13 Yagi, S. ve Kunii, D., Studies on Effective Thermal Conductivities in Packed Beds, AIChE J., 3 (1957), 3, 373-381.
  • 14 Yagi, S. ve Kunii, D., Studies on Heat Transfer Near Wall Surface in Packed Beds, AIChE J., 6 (1960), 1. 97-104.
  • 15 Ranz, W.E., Friction and Transfer Coefficients for Single Particles and Packed-Beds, Chem.Eng.Prog., 48 (1952), 5.
  • 16 Hatto, S. ve Maeda, S., , Kagaku Kogaku, 12 (1948), 56.
  • 17 Botterill, J.S.M. ve Denloye, A.O.O., A Theoretical Model of H.T. to a Packed or Quiescent Fluidized-Bed, Chem_Eng. Sci., 33 (1978), 509-515.
  • 18 Roblee, L.H.S. ve diğerleri, Radial Porosity Variations in Packed Beds, AIChE J., 4 (1958), 6, 460-464.
  • 19. Bunnell, D.G. ve diğerleri, IEC, 41 (1979), 1977.
  • 20 Wakao, N. ve Kaguei, S. Heat and Mass Transfer in Packed Beds, Gordon and Breach Science Publishers, New York, 1982.
  • 21 Massimila, L. ve Westwater, J.W., Photographic Study of Solid Gas Fluidization, AIChE J.,6 (1965),1,134-138.
  • 22 Kılkış, B., Akışkan Yatak-Dış Duvar Isı Transferi Açısın-dan Bilgisayar Yardımı ile Hidrodinamik Yatak Işletimi Tasarımı, 1. Ulusal Makina Tasarım ve Imalat Kongresi, Bildiri Kitabı, 247-254, ODTÜ, 1984.
  • 23 Mickley, H.S. ve Trilling, A.C., Heat Transfer Characteristics of Fluidized-Beds, Ind.Eng.Chem, 41 (1949), 6, 1135- 1147.
  • 24 When, C.Y. ve Leva, M., Fluidized Bed Heat Transfer: A Generalized Dense Phase Correlation, AIChE J. 2 (1956), 4, 482-488.
  • 25 Heerden Van, C. ve diğerleri, Mechanism of Heat Transfer in Fluidized-Beds, lnd.Eng.Chem., 45 (1953), 6, 1237-1242.
Year 1987, Volume: 1 Issue: 5, 213 - 223, 01.10.1987

Abstract

References

  • 1 Kılkış, B., Calculation of Local Bed to Wall Heat Transfer in a Fluidized Bed, U.S. Morgantown Energy Technology Center, Technical Report, August 1985.
  • 2 Kılkış, B., Development of a Computer Program to Predict the Wall to Bed Heat Transfer in Co-Operation with the S' code, U.S. Morgantown Energy Technology Center, Technical Report, August 1982.
  • 3 Chen,P.J. ve diğerleri, Computer Modelling of Coal Gasification Reactors, U.S. Dept. of Energy, Technical Report, No. DOEİET/10242-TI, vol.1-4, 1981.
  • 4 Zabrodsky, S.S., Hydrodynamics and Heat Transfer in Fluidized Beds, MIT Press London, 1986.
  • 5 Mickley, H.S. ve Fairbanks, D.F., Mechanism of Heat Transfer to Fluidized-Beds, AIChE J., 3 (1955), 374-384.
  • 6 Leva,M. ve Grummer,M., A Correlation of Solids Turnover in Fluidized Systems, Chem.Eng.Prog., 48 (1952), 6, 307-312.
  • 7 Dow,M.W. ve Jakob,M., Heat Transfer Between a Vertical Tube and a Fluidized Air Solid Mixture, ChenkEng.Prog-, 47 (1951), 12, 637-648.
  • 8 Levenspiel, O. ve Walton, J.S., Chem.Eng.Prog.Symp., Series, 50 (1950), 9, 1-3.
  • 9 Gorelik, A.G., Mechanism of Heat Exchange Between Surfaces and Fluidized Bed, J.Eng.Phys., 13 (1967), 6, 495-498.
  • 10 Dixon, A.G., Thermal Resistance Models of Packed Bed Effective Heat Transfer Parameters, AIChE J., 31 (1985), 5.
  • 11 Kondukov, L.I. ve diğerleri, Inv. on Hydrodynamics of Fluidized-Bed as a Component determining Heat and Mass Transfer, Fifth Int.Heat T.Conf.Proceedings, 54-58, Soc. of Chem.Eng., Tokyo, 1974.
  • 12 Glicksman, L.R. ve Decker, N.A., Design Relationships for Predicting Heat Transfer to Tube Bundles in Fluidized Bed Combustors, Sixth Int.Conlon Fluidized-Bed Combustion Proceedings, 1152-1158, 1980.
  • 13 Yagi, S. ve Kunii, D., Studies on Effective Thermal Conductivities in Packed Beds, AIChE J., 3 (1957), 3, 373-381.
  • 14 Yagi, S. ve Kunii, D., Studies on Heat Transfer Near Wall Surface in Packed Beds, AIChE J., 6 (1960), 1. 97-104.
  • 15 Ranz, W.E., Friction and Transfer Coefficients for Single Particles and Packed-Beds, Chem.Eng.Prog., 48 (1952), 5.
  • 16 Hatto, S. ve Maeda, S., , Kagaku Kogaku, 12 (1948), 56.
  • 17 Botterill, J.S.M. ve Denloye, A.O.O., A Theoretical Model of H.T. to a Packed or Quiescent Fluidized-Bed, Chem_Eng. Sci., 33 (1978), 509-515.
  • 18 Roblee, L.H.S. ve diğerleri, Radial Porosity Variations in Packed Beds, AIChE J., 4 (1958), 6, 460-464.
  • 19. Bunnell, D.G. ve diğerleri, IEC, 41 (1979), 1977.
  • 20 Wakao, N. ve Kaguei, S. Heat and Mass Transfer in Packed Beds, Gordon and Breach Science Publishers, New York, 1982.
  • 21 Massimila, L. ve Westwater, J.W., Photographic Study of Solid Gas Fluidization, AIChE J.,6 (1965),1,134-138.
  • 22 Kılkış, B., Akışkan Yatak-Dış Duvar Isı Transferi Açısın-dan Bilgisayar Yardımı ile Hidrodinamik Yatak Işletimi Tasarımı, 1. Ulusal Makina Tasarım ve Imalat Kongresi, Bildiri Kitabı, 247-254, ODTÜ, 1984.
  • 23 Mickley, H.S. ve Trilling, A.C., Heat Transfer Characteristics of Fluidized-Beds, Ind.Eng.Chem, 41 (1949), 6, 1135- 1147.
  • 24 When, C.Y. ve Leva, M., Fluidized Bed Heat Transfer: A Generalized Dense Phase Correlation, AIChE J. 2 (1956), 4, 482-488.
  • 25 Heerden Van, C. ve diğerleri, Mechanism of Heat Transfer in Fluidized-Beds, lnd.Eng.Chem., 45 (1953), 6, 1237-1242.
There are 25 citations in total.

Details

Primary Language Turkish
Journal Section Araştırma, Geliştirme ve Uygulama Makaleleri
Authors

Birol Kılkış This is me

Publication Date October 1, 1987
Submission Date February 16, 1987
Published in Issue Year 1987 Volume: 1 Issue: 5

Cite

Vancouver Kılkış B. Akışkan Yatak-Dış Duvar Isı Transferi. MATİM. 1987;1(5):213-2.