Numerical Simulation of Convective Flows in a Thin Liquid Layer at Large Reynolds Numbers
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Published:2024-06
Issue:6
Volume:64
Page:1342-1352
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ISSN:0965-5425
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Container-title:Computational Mathematics and Mathematical Physics
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language:en
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Short-container-title:Comput. Math. and Math. Phys.
Publisher
Pleiades Publishing Ltd
Reference24 articles.
1. O. A. Kabov, D. V. Zaitsev, and V. V. Cheverda, “Evaporation and flow dynamics of thin, shear-driven liquid films,” Experim. Thermal Fluid Sci. 35 (5), 825–831 (2011).
2. V. P. Reutov, A. V. Ezerskii, G. V. Rybushkina, and V. V. Chernov, “Convective structures in a thin layer of an evaporating liquid under an airflow,” J. Appl. Mech. Tech. Phys. 48 (4), 469–478 (2007).
3. M. A. Frank and O. A. Kabov, “Thermocapillary structure formation in a falling film: Experiment and calculations,” Phys. Fluids 18, 032107-1 (2006).
4. A. Oron, S. H. Davis, and S. G. Bankoff, “Long-scale evolution of thin liquid films,” Rev. Mod. Phys. 69 (3), 931–980 (1997).
5. S. Miladinova, S. Slavtchev, G. Lebon, and J.-C. Legros, “Long-wave instabilities of non-uniformly heated falling films,” J. Fluid Mech. 453, 153–175 (2002).