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Tytuł artykułu

Investigation of heat mass transfer processes in the boundary layer with injection

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Języki publikacji
EN
Abstrakty
EN
The heat mass transfer processes were studied in a boundary layer over the porous flat plate using the two-parameter turbulence model. The flows with evaporation of ethyl alcohol, and water and also flows with injection of hydrogen (helium) into the laminar and turbulent outer air flow were calculated. Similarity of heat and mass transfer processes and the effect of diffusion component of the heat flux on calculations of the flow field were investigated. Comparison with experimental data on distribution of the average characteristics in the boundary layer is shown.
Rocznik
Strony
41--54
Opis fizyczny
Bibliogr. 17 poz.,Rys., wykr.,
Twórcy
  • Institute of Thermophysics SB RAS, 1 Prosp. Acad. Lavrentyev, 630090 Novosibirsk, Russia, ludmila@itp.nsc.ru
Bibliografia
  • [1] JEROMIN L. O. F.: The Status of Research in Turbulent Boundary Layers with Fluid Injection, [in]: Progress in Aeronautical Sciences, Oxford and others, 10 (1970), 65-189.
  • [2] VOLCHKOV E. P., DVORNIKOV N. A., PEREPECHKO L. N.: Turbulent combustion modelling in a boundary layer over a porous flat plate with ethanol injection, Russ. J. Eng. Thermophys. 5 (1995), No. 4, 425-432.
  • [3] EROSHENKO V. M., ZAICHIK L. I.: Hydrodynamics and Heat Mass Transfer on the Porous Surfaces, Nauka, Moscow 1984.
  • [4] KUTATELADZE S. S., LEONTIEV A. I.: Heat mass transfer and skin friction in a turbulent boundary layer, Energoatomizdat, Moscow 1985.
  • [5] HUTCHINSON P., KHALIL E. E., WHITELAW J. H., WIGLEY G.: The Calculation of Furnace-flow Properties and Their Experimental Verification, Trans. of the ASME, J. of Heat Transfer 98 (1976), 276-283.
  • [6] LYAPIN YU. V. AND STRELETZ M. KH.: The internal flow of gas mixtures, Nauka, Moscow 1989.
  • [7] KAYS W. M.: Convective Heat and Mass Transfer, McGraw, New York 1970.
  • [8] LAM C. K. G., BREMHORST K. A.: Modified form of the (k - ε)-model predicting wall turbulence, J. Fluids Eng. 103 (1981) 456-460.
  • [9] WILKE C. R.: A viscosity equation for gas mixture, J. Chem. Phys. 18 (1950), No. 4, 517-522.
  • [10] WILKE C. R.: Diffusional properties of multicomponent gases, Chem. Eng. Progr. 46, (1950), No. 2, 95-104.
  • [11] MASON E. A., SAXENA S. C.: Approximate formula for the conductivity of gas mixtures, Phys. Fluids. 1 (1958), No. 5, 361-369.
  • [12] REID R. C., PRAUSNITZ J. M., SHERWOOD T. K.: The properties of gases and liquids, Third edition, McGraw, New York 1980.
  • [13] PATANCAR, S.: Numerical Heat Transfer and Fluid Flow, Hemisphere Publishing Corporation, New York 1980.
  • [14] VOLCHKOV E. P., DVORNIKOV N. A., PEREPECHKO L. N.: Study of heat and mass transfer in the laminar boundary layer, Russ. J. Eng. Thermophys. 6 (1996), No. 3, 231-240.
  • [15] BOYARSHINOV B. F., VOLCHKOV E. P., TEREKHOV V. I.: Heat and Mass Transfer with Evaporation of a Liquid into Gaseous Flow, Russ. J. Eng. Thermophys. 1 (1985), No. 1, 93-112.
  • [16] BOYARSHINOV B. F.: Heat mass transfer in a boundary layer with evaporation and combustion of ethanol, Ph. D. Thesis, Novosibirsk, Institute of Thermophysics, 1988.
  • [17] VOLCHKOV E. P., KOZ'MENKO V. N., LEBEDEV V. P.: Heat transfer in a turbulent (1973) 124-129.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0833-3335
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