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Heat and mass transfer in the near-wall gas-droplets jet along the non-adiabatic pipe wall

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The two-velocity, two-temperature approximation of the Eulerian approach was used to develop, within the framework of continuum mechanics, a model for predicting turbulent flows of air with suspended liquid droplets after their injection into the wall zone of the flow. The influence of droplets evaporation processes in the wall jet on heat transfer between the two-phase gas-drop flow and the heated wall is examined.
Rocznik
Strony
17--36
Opis fizyczny
Bibliogr. 20 poz., wykr., wz.
Twórcy
autor
  • Kutateladze Institute of Thermophysics SB RAS, 1 Acad. Lavrent'ev Ave., 630090 Novosibirsk, Russia
autor
  • Kutateladze Institute of Thermophysics SB RAS, 1 Acad. Lavrent'ev Ave., 630090 Novosibirsk, Russia
Bibliografia
  • [1] ABRAMOVICH G.N., GIRSHOV T.A., KRASHENINNIKOV S.YU., SMIRNOVA I.P., SEKUNDOV A.M.: The Theory of Turbulent Jets, Nauka, Moscow 1984 (in Russian).
  • [2] ANDERSON J.D., JR., DEGREZ G., DICK E., GRUNDMANN R.: Introduction to Computational Fluid Dynamics, Springer-Verlag, Berlin 1992.
  • [3] BRAILOVSKAYA I.Yu., CHUDOV L.A.: The solution boundary layer equations using finite-difference method, Computational Methods and Programming (1962), 167-182 (in Russian).
  • [4] CROWE C.T., SOMMERFELD M. TSUJI Y.: Multiphase Flow with Droplets and Particles, CRC Press, Boca Raton 1998.
  • [5] DEREVICH I.V.: The hydrodynamics and heat transfer and mass transfer of particles under conditions of turbulent flow of gas suspension in a pipe and in an axisymmetric jet, High Temperature, 40(2002), 78-91.
  • [6] EKKERT E.R., DRAKE R.M.: The Heat- and Mass Transfer Theory, Energoizdat, Moscow 1961 (in Russian).
  • [7] HWANG C.B., LIN C.A.: Improved low-Reynolds-number k - ε model based on direct simulation data, AIAA J. 36(1998), 38-43.
  • [8] KUTATELADZE S.S., LEONT'EV A.I.: Heat and Mass Transfer in Turbulent Boundary Layer, Hemisphere, Washington 1989.
  • [9] MASTANAIAH K., GANIC E.N.: Heat transfer in two-component dispersed flow, J. Heat Transfer, 103(1981), 300-306.
  • [10] MOSTAFA A.A., MONGIA H.C.: On the modeling of turbulent evaporating sprays: Eulerian versus Lagrangian approach, Int. J. Heat Mass Transfer, 30(1987), 2583-2593.
  • [11] REPUKHOV V.M., NEDUZHKO A.I.: An effectiveness of multicomponent non-equilibrium gas-steam and liquid thermal screens, Proc. Akad. of Sciences of Ukrainian SSR, Ser. A, (1991), 78-85 (in Russian).
  • [12] SHRAIBER A.A., GAVIN L.B., NAUMOV V.A., YATSENKO V.P.: Turbulent Flows in Gas Suspensions, Hemisphere, Washington 1990.
  • [13] TALMOR E., WEBER N.: Foreign-gas film cooling along nonconverging and converging walls at various free-stream turbulence levels, Proc. 4th IHTC, Versaille-Paris, Prance, FC-8.7, 1970.
  • [14] TEREKHOV V.I., PAKHOMOV M.A.: The thermal efficiency of near-wall gas-droplets screens. I. Numerical modeling, Int. J. Heat Mass Transfer, 48(2005), 1747-1759.
  • [15] TEREKHOV V.I., PAKHOMOV M.A., SHAROV K.A., SHISHKIN N.E.: The thermal efficiency of near-wall gas-droplets screens. II. Experimental study and comparison with numerical results, Int. J. Heat Mass Transfer, 48(2005), 1760-1771.
  • [16] TEREKHOV V.I., PAKHOMOV M.A.: The numerical modeling of the tube turbulent gas-drop flow with phase changes, Int. J. Thermal Sci., 43(2004), 595-610.
  • [17] TEREKHOV V.I., SHAROV K.A., SHISHKIN N.E.: An experimental study of gas-stream mixing with a near-wall gas-drop jet, Thermophysics and Aeromechanics, 6(1999), 331-339.
  • [18] UIJETTERWAAL W.S.J. OLIEMANS R.V.A.: Particle dispersion and deposition in direct numerical and large eddy simulations of vertical pipe flow, Phys. Fluids A, 8(1996), 2590-2604.
  • [19] VASIL'EV A.A.: An effectiveness of gas-steam and liquid thermal screen behind a tangential slot, Industrial Heat Eng., 10(1988), 36-38.
  • [20] VOLKOV E.P., ZAICHIK L.I., PERSHUKOV V.A.: Numerical Modeling of Combustion of Solid Fuel, Nauka, Moscow, 1994 (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1398-5386
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