Skip to main content
Log in

Dependence of the Thermodiffusion Constant of a Mixture of Two Gases on the Addition of a Third Gas to it

  • Published:
Journal of Engineering Physics and Thermophysics Aims and scope

The dependence of the thermodiffusion constant of a mixture of two gases on the addition of a third gas, whose molecular mass is larger than the molecular mass of the light component of the mixture and smaller than the molecular mass of its heavy component, to it was investigated. The investigations were carried out for different compositions of the initial binary mixture and different concentrations and masses of the additional component. Good agreement between the calculation and measurement data on the indicated constant has been obtained within the limits of the calculation and experimental errors.

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.

Similar content being viewed by others

References

  1. K. E. Grew and T. L. Ibbs, Thermal Diffusion in Gases [Russian translation], GITTL, Moscow (1965).

  2. A. G. Shashkov, A. F. Zolotukhina, and V. B. Vasilenko, Thermodiffusion Factor of Gaseous Mixtures [in Russian], Belorusskaya Nauka, Minsk (2007).

  3. S. K. Deb and A. K. Barua, Thermal diffusion in ternary gas mixtures, Physics, 34, No. 3, 438–444 (1967).

    Google Scholar 

  4. A. K. Ghosh, A. K. Batabyal, and A. K. Barua, Thermal diffusion in multicomponent gas mixtures, J. Chem. Phys., 47, No. 10, 3704–3707 (1967).

    Article  Google Scholar 

  5. A. F. Bogatyrev, Y. I. Zhavrin, N. D. Kosov, and V. F. Kryuchkov, Effect of thermodiffusive separation of components on heat transfer in multicomponent gas mixtures, Heat Transf. Sov. Res., 10, No. 2, 38–42 (1978).

    Google Scholar 

  6. S. K. Deb and A. K. Barua, Thermal diffusion in the ternary system helium–neon–carbon dioxide, Trans. Faraday Soc., 64, 358–362 (1968).

    Article  Google Scholar 

  7. A. F. Bogatyrev, L. Yu. Vasil′chenko, and L. I. Krivolapova, Dependence of the thermodiffusion separation of a binary mixture on the addition of a third component, Nauchn. Obozr., No. 3, 37–39 (2010).

  8. A. F. Bogatyrev and O. A. Kulikova, Molecular mass transfer in multicomponent gas systems under nonisothermal conditions, Izv. Vyssh. Ucheb. Zaved., Probl. Énerg., Nos. 3–4, 127–130 (2013).

  9. A. F. Bogatyrev, O. A. Kulikova, and M. A. Nezovitina, Method of calculating the thermodiffusion separation in ternary gas systems, Nauchn. Obozr., No. 3, 184–190 (2013).

  10. A. F. Bogatyrev and O. A. Kulikova, Thermal diffusion in ternary gas systems, Nauchn. Obozr., No. 3, 160–166 (2012).

  11. A. F. Bogatyrev, O. A. Makeenkova, and M. A. Nezovitina, Experimental study of thermal diffusion in multicomponent gaseous systems, Int. J. Thermophys., 36, No. 4, 633–647 (2015).

    Article  Google Scholar 

  12. A. F. Bogatyrev and O. A. Kulikova, Measurement and calculation of the thermodiffusion separation in ternary gas systems, Vesti Gaz. Nauki, No. 1 (12), 36–40 (2013).

  13. A. F. Bogatyrev, O. A. Makeenkova, and M. A. Nezovitina, Temperature and concentration dependences of thermal-diffusion separation in ternary gas systems, J. Eng. Phys. Thermophys., 87, No. 5, 1255–1265 (2014).

    Article  Google Scholar 

  14. A. F. Bogatyrev, O. A. Makeenkova, and M. A. Nezovitina, Infl uence of the composition of a ternary gas mixture on the thermal diffusion in it, Vestn. Kazansk. Tekhnol. Univ., 17, No. 19, 191–193 (2014).

    Google Scholar 

  15. A. F. Bogatyrev, O. A. Makeenkova, and M. A. Nezovitina, Thermodiffusion separation in a binary mixture of gases with an inert-gas addition, Estestv. Tekh. Nauki, No. 2, 37–42 (2014).

  16. A. G. Shashkov, A. F. Zolotukhina, and L. R. Fokin, Generalization and calculation of the thermal diffusion factor of binary hydrogen-containing gaseous mixtures, J. Eng. Phys. Thermophys., 84, No. 1, 39–48 (2011).

    Article  Google Scholar 

  17. M. F. Laranjeira, An elementary theory of thermal and pressure diffusion in gaseous binary and complex mixtures: II. Binary mixtures with experimental comparison, Physics, 26, No. 6, 417–430 (1960).

    MathSciNet  Google Scholar 

  18. A. F. Bogatyrev and M. A. Nezovitina, Thermodiffusion separation in dense ternary gas systems, Nauchn. Obozr., No. 2, 123–128 (2012).

  19. A. F. Bogatyrev, O. A. Makeenkova, and M. A. Nezovitina, Calculational method in treating thermal diffusion characteristics in ternary gas mixtures, Adv. Studies Theor. Phys., 8, No. 28, 1199–1204 (2014).

    Google Scholar 

  20. A. F. Bogatyrev, S. N. Gudomenko, and E. E. Makletsova, Procedure of generalization of experimental data on the thermodiffusion separation in rarefied gases, in: Thermophysical Properties of Substances and Materials [in Russian], Issue 17, Izd. Standartov, Moscow (1982), pp. 133–139.

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to A. F. Bogatyrev.

Additional information

Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 89, No. 3, pp. 728–735, May–June, 2016.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Nezovitina, N.A., Bogatyrev, A.F. & Makeenkova, O.A. Dependence of the Thermodiffusion Constant of a Mixture of Two Gases on the Addition of a Third Gas to it. J Eng Phys Thermophy 89, 733–740 (2016). https://doi.org/10.1007/s10891-016-1433-5

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10891-016-1433-5

Keywords

Navigation