Skip to main content
Log in

Use of Pneumometric Systems for Investigation of Granular-Bed Reactors

  • Published:
Chemical and Petroleum Engineering Aims and scope

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

References

  1. V. V. Zosimov and L. M. Lyamshev, “Fractals and scaling in acoustics,” Akust. Zh., 40, No. 5, 709–736 (1994).

    Google Scholar 

  2. E. Feder, Fractals [Russian translation], Mir, Moscow (1991).

    Google Scholar 

  3. K. Kynio, T. Chiaki, and J. Masaru, “Simultaneous measurements of bubbles and particles in fluidized beds,” Kagaku Kogaku Rombuisyu, 17, No. 5, 1062–1065 (1991).

    Google Scholar 

  4. R. Martin, N. Hideaki, and H. Troshimasa, “Particle motion at the wall of a circulating fluidized bed,” Powder Technol., 70, No. 3, 207–214 (1992).

    Google Scholar 

  5. A. Yu. Varaksin, Yu. V. Polezhaev, and A. F. Polyakov, “Experimental investigation of pulsation characteristics of a turbulent flow in a tube containing a gas and solid particles,” in: Second Russian National Conference on Heat Exchange [in Russian], Vol. 5, Moscow (1998), pp. 159–162.

    Google Scholar 

  6. V. E. Nakoryakov, V. A. Mukhin, and B. I. Volkov, “Experimental investigation of velocity fields in a stationary granular bed,” in: Transfer Processes in the Manufacture of Energy-Producing Chemicals [in Russian], Novosibirsk (1985), pp. 138–150.

  7. V. I. Smirnov, “Automated dual-component laser doppler anemometer for measurement of turbulence parameters in a gas-stratification pipe,” Izmer. Tekh., No. 6, 40–46 (1996).

    Google Scholar 

  8. J. Werter, E.-U. Hartge, and D. Rensner, “Meβtechniken für gas/feststoff-wirbelschichtreaktoren,” Chem. Ing./Techn., 62, No. 8, 605–613 (1990).

    Google Scholar 

  9. R. Z. Adinberg and V. V. Dil'man, “Measurement of local flow velocities in a stationary granular bed,” Teor. Osn. Khim. Tekhnol., 19, No. 2, 213–216 (1985).

    Google Scholar 

  10. Yu. M. Varaksin, Yu. V. Polezhaev, and A. F. Polyakov, “Effectiveness of signal-amplitude selection for investigation of heterogeneous flows using LDA,” Izmer. Tekh., No. 6, 47–51 (1996).

  11. M. É. Aérov, O. M. Todes, and D. A. Narinskii, Vessels with Stationary Granular Beds [in Russian], Khimiya, Leningrad (1979).

  12. B. S. Rinkevichus, Laser Flow Diagnostics [in Russian], Znanie, Moscow (1988).

  13. V. P. Pavlov, “Liquid circulation in a batch-action bubbling vessel,” Khim. Prom., No. 9, 698–700 (1965).

    Google Scholar 

  14. L. I. Frenkel, N. B. Kondukov, B. V. Pankov, et al., “Intensification of surface-to-bed heat transfer in a fluidized bed at controlled gas distribution,” Preprint of a paper presented at the Sixth International Conference on Heat and Mass Exchange, Toronto, Canada (1978), pp. 37–42.

  15. B. V. Pankov, S. A. Nagornov, S. N. Kusmin, and I. A. Cherepennikov, “Three-phase fluidized bed for quenching steel parts,” Heat Transfer Res., 25, No. 8, 925–929 (1993).

    Google Scholar 

  16. B. V. Pankov, “Investigation of gas-velocity fluctuations in a fluidized bed and their relation to external heat exchange,” Dissertation for Candidate of Technical Sciences, Moscovskii Institut Khimicheskogo Mashinostroenie, Moscow (1976).

    Google Scholar 

  17. B. V. Pankov and I. M. Tsyrul'nikov, “Determination of gas velocity in fluidized-bed reactors,” Khim. Neft. Mashinostr., No. 1, 32–34 (2001).

    Google Scholar 

  18. B. V. Pankov and I. M. Tsyrul'nikov, “Measurement of the average velocity of pulsating flows in reactors with a gas phase,” Khim. Neft. Mashinostr., No. 7, 6–7 (2001).

    Google Scholar 

  19. V. P. D'yakonov, Maple V R3/R4/R5/M Mathematical System [in Russian], Solon, Moscow (1998).

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Pankov, B.V., Tsyrul'nikov, I.M. Use of Pneumometric Systems for Investigation of Granular-Bed Reactors. Chemical and Petroleum Engineering 38, 8–13 (2002). https://doi.org/10.1023/A:1015209918433

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1015209918433

Navigation