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Calculation of turbulent gas-dispersion flows in channels with recirculation eddies

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Abstract

Gas-dispersion turbulent flows in a plane channel with expansion behind a step and in a cylindrical chamber with sudden expansion are numerically simulated on the basis of the Euler two-velocity description.

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References

  1. C. P. Chen and P. E. Wood, “Turbulence closure modeling of the dilute gas-particle axisymmetric jet,” AIChE Journal,32, No. 1, 163–166 (1986).

    Article  Google Scholar 

  2. A. A. Shraiber, L. B. Gavin, V. A. Naumov, and V. P. Yatsenko,Turbulent Gas-Dispersion Flows, [in Russian], Naukova Dumka, Kiev (1987).

    Google Scholar 

  3. A. A. Mostafa and H. C. Mongia, “On the modeling of turbulent evaporating sprays: Eulerian versus Lagrangian approach,” Int. J. Heat and Mass Transfer,30, No. 12, 2583–2593 (1987).

    Article  ADS  Google Scholar 

  4. I. V. Derevich and L. I. Zaichik, “Particle deposition from a turbulent flow,” Fluid Dynamics,23, No. 5, 722–729 (1988).

    Google Scholar 

  5. M. A. Rizk and S. E. Elghobashi, “A two-equation turbulence model for dispersed dilute confined two-phase flows,” Int. J. Multiphase Flow,15, No. 1, 119–133 (1989).

    Article  Google Scholar 

  6. L. V. Kondrat'ev and V. V. Shot, “Investigation of gas-particle turbulent pipe flow with allowance for collisions with the wall and particle rotation,” Fluid Dynamics,25, No. 1, 46–53 (1990).

    Article  Google Scholar 

  7. I. V. Derevich and V. M. Eroshenko, “Calculation of the average phase velocity slip in turbulent multiphase channel flow,” Fluid Dynamics,25, No. 2, 221–229 (1990).

    Article  Google Scholar 

  8. A. A. Vinberg, L. I. Zaichik, and V. A. Pershukov, “Model for calculating of turbulent gas-dispersion jet flows,” Inzhenerno-Fizicheskii Zhurnal,61, No. 4, 554–563 (1991).

    Google Scholar 

  9. I. N. Gusev, E. I. Guseva, and L. I. Zaichik, “Model of particle deposition from turbulent gas-solid flow in channels with absorbent walls,” Fluid Dynamics,27, 43–48 (1992).

    Article  Google Scholar 

  10. A. A. Vinberg, L. I. Zaichik, and V. A. Pershukov, “Calculation of the momentum and heat transfer in turbulent gas-particle jet flows,” Fluid Dynamics,27, No. 3, 353–362 (1992).

    Google Scholar 

  11. F. Pourahmadi and J. A. C. Humphrey, “Modeling solid-fluid turbulent flows with application to predicting erosive wear,” Phys. Chem. Hydrodyn.,4, No. 3, 191–219 (1983).

    ADS  Google Scholar 

  12. B. Dobrowolski, “A computational model for the prediction of two-dimensional non-equilibrium turbulent recirculating two-phase flow,” Arch. Mech.,38, No. 5-6, 611–634 (1986).

    MATH  Google Scholar 

  13. T. Hong and L. Zhou, “Numerical simulation of three-dimensional turbulent gas-particle flows in boiler furnaces by a continuum model of particle phase,” in:Proc. I-st Asian-Pacific Int. Symp. on Combustion and Energy Utilization. Beijung, 1990, Beijung, 184–189 (1990).

  14. O. Simonin, “Second-moment prediction of dispersed phase turbulence in particle-laden flows,” in:Proc. 8h Symp. on Turbulent Shear Flows. Munich, 1991, Munich, pp.7.41–7.4.6 (1991).

  15. L. I. Zaichik, “Models of turbulent momentum and heat transfer in dispersed phase based on the equations for second and third moments of pulsation of particle velocity and temperature,” Inzhenemo-Frzicheskii Zhurnal,63, No. 4, 404–413 (1992).

    Google Scholar 

  16. W. Rodi, “Turbulent models for environment,” in:Prediction Methods for Turbulent Flows, Hemisphere Publ. Corp. (1980).

  17. B. E. Launder and D. B. Spalding, “The numerical computation of turbulent flow,” Comput. Math. Appl. Mech. Eng.,2, 269–289 (1974).

    Google Scholar 

  18. M. N. Kogan,Dynamics of a Rarefied Gas [in Russian], Nauka, Moscow (1967).

    Google Scholar 

  19. M. A. Goldshtik and A. K. Leont'ev, “On the collision of a sphere and a rigid surface,” Inzhenerno-Fizicheskii Zhurnal,3, No. 11, 83–88 (1960).

    Google Scholar 

  20. V. A. Naumov, “Two approaches to the description of the collision of a spherical body and a rough wall,” Prikl. Mekhanika,25, No. 5, 116–119 (1989).

    MATH  MathSciNet  Google Scholar 

  21. N. I. Gel'perin, V G. Ainshtein, L. I. Krupnik, and Z. N. Memedlyaev, “Hydrodynamic resistance of gas-dispersion flows,” Izv Vusov, Énergetika, No. 1, 94–99 (1976).

  22. Y. B. Hahn and H. Y. Sohn, “The trajectories and distribution of particles in a turbulent axisymmetric gas jet injected into a flash furnace shaft,” Met. Trans. B,19B, No. 1, 871–884 (1988).

    Google Scholar 

  23. L. S. Lee and F. Durst, “On the motion of particles in turbulent duct flows,” Int. J. Multiphase Flow,8, No. 1, 124–146 (1982).

    Article  Google Scholar 

  24. B. Ruck and B. Makiola, “Particle dispersion in a single-sided backward-facing step flow,” Int. J. Multiphase Flow,14, No. 6, 787–800 (1988).

    Article  Google Scholar 

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Moscow. Translated from Izvestiya Rossiiskoi Akademii Nauk, Mekhanika Zhidkosti i Gaza, No. 4, pp. 65–75, July–August, 1994. Original article submitted January 5, 1993.

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Zaichik, L.I., Kozelev, M.V. & Pershukov, V.A. Calculation of turbulent gas-dispersion flows in channels with recirculation eddies. Fluid Dyn 29, 491–499 (1994). https://doi.org/10.1007/BF02319070

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