Flow structures and heat transfer characteristics in fan flows with and without delta-wing vortex generators
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Aerospace Engineering,Nuclear Energy and Engineering,General Chemical Engineering
Reference16 articles.
1. F.J. Edwards, C.J.R. Alker, The improvement of forced convection surface heat transfer using surface protrusions in the form of cubes and vortex generators, in: Proceedings of the Fifth International Heat Transfer Conference, Tokyo, vol. 2, 1974, pp. 244–248
2. C.M.B. Russell, T.V. Jones, G.H. Lee, Heat transfer enhancement using vortex generators, in: Proceedings of the Seventh International Heat Transfer Conference, Munich, vol. 3, 1982, pp. 283–288
3. Heat transfer effects of a longitudinal vortex embedded in a turbulent boundary layer;Eibeck;Journal of Heat Transfer,1987
4. A.Y. Turk, G.H. Junkhan, Heat transfer enhancement downstream of vortex generators on a flat plate, in: Proceedings of the Eighth International Heat Transfer Conference, San Francisco, CA, 1986, pp. 2903–2908
5. Heat transfer enhancement and drag by longitudinal vortex generators in channel flow;Fiebig;Experimental Thermal and Fluid Science,1991
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