Diffusion and Thermal Diffusion Coefficients of a Binary Mixture in the Van der Waals Model
-
Published:2024-02
Issue:1
Volume:60
Page:126-143
-
ISSN:0010-5082
-
Container-title:Combustion, Explosion, and Shock Waves
-
language:en
-
Short-container-title:Combust Explos Shock Waves
Publisher
Pleiades Publishing Ltd
Reference33 articles.
1. M. Eslamian and M. Z. Saghir, “A Critical Review of Thermodiffusion Models: Role and Significance of the Heat of Transport and the Activation Energy of Viscous Flow," J. Non-Equilib. Thermodyn. 34 (2), 97–131 (2009); DOI: 10.1515/JNETDY.2009.007.
2. H. Baghooee and A. Shapiro, “Unified Thermodynamic Modelling of Diffusion and Thermodiffusion Coefficients," Fluid Phase Equilib. 558, 113445 (2022); DOI: 10.1016/j.fluid.2022.113445.
3. A. B. Medvedev, “Estimating the Self-Diffusion and Mutual Diffusion Coefficients of Binary Mixtures Based on a Modified Van der Waals Model," Fiz. Goreniya Vzryva 53 (4), 58–71 (2017) [Combust., Expl., Shock Waves 53 (4), 420–432 (2017); DOI: 10.1134/S0010508217040062].
4. A. B. Medvedev, “Determination of the Phase Diagram of a Mixture of H2 + O2 Based on a Modified Van der Waals Model," Fiz. Goreniya Vzryva 58 (1), 3–12 (2022) [Combust., Expl., Shock Waves 58 (1), 1–9 (2022); DOI: 10.1134/S0010508222010014].
5. M. F. Laranjeira, Experimental and Theoretical Thermal Diffusion Factors in Binary and Ternary Mixtures (Klein Offsetdrukkerij Poortpers, Amsterdam, 1959).