A numerical study of heat transfer enhancement due to the deformation of droplets at high Reynolds numbers is described. The two phase‐flow has been computed with a 3D DNS program using the volume‐of‐fluid method. The droplets are deformed because of the surrounding gas stream especially due to a sudden rise of flow velocity from zero to Ui. As the governing non‐dimensional parameter the Weber number of the droplets has been varied between 1.3 and 10.8 by assuming different surface tensions at Reynolds numbers between 360 and 853. The dynamical behavior of the droplets as a function of the Weber and the Ohnsorge number are in good agreement with experimental results from the literature. At the highest Reynolds number Re=853, a significant dependency of Nu on We has been found. The comparison of a Nusselt number computed with the real surface area with a Nusselt number computed with the spherical surface area shows that the heat transfer increases not only due to the droplet motion but also due to the larger surface area of the deformed droplet.
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1 January 2004
Research Article|
January 01 2004
Transient heat transfer of deforming droplets at high Reynolds numbers Available to Purchase
Matthias Hase;
Matthias Hase
Institute of Aerospace Thermodynamics, University of Stuttgart, Stuttgart, Germany
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Bernhard Weigand
Bernhard Weigand
Institute of Aerospace Thermodynamics, University of Stuttgart, Stuttgart, Germany
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Publisher: Emerald Publishing
Online ISSN: 1758-6585
Print ISSN: 0961-5539
© Emerald Group Publishing Limited
2004
International Journal of Numerical Methods for Heat & Fluid Flow (2004) 14 (1): 85–97.
Citation
Hase M, Weigand B (2004), "Transient heat transfer of deforming droplets at high Reynolds numbers". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 14 No. 1 pp. 85–97, doi: https://doi.org/10.1108/09615530410511649
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