Mixed convection at small Richardson number on triple deck scales.
Author(s) : LAGREE P. Y.
Type of article: Article
Summary
Mixed convection over a horizontal flat plate leads to a breakdown when the fluid is cooled from below, so the author proposeS to investigate the problem in the framework of "triple deck" theory. A new term in the pressure displacement relation, accounting for the hydrostatic pressure change across the main deck, appears from the analysis. The linearized solution given shows upstream influence.
Details
- Original title: Mixed convection at small Richardson number on triple deck scales.
- Record ID : 1994-2838
- Languages: English
- Source: C. R. Acad. Sci., Sér. II - vol. 318 - n. 9
- Publication date: 1994/05/05
- Document available for consultation in the library of the IIR headquarters only.
Links
See the source
Indexing
- Themes: Mass transfer
- Keywords: Calculation; Liquid; Boundary layer; Heat transfer; Temperature; Flat plate; Convection
-
MEASUREMENTS AND CALCULATIONS OF TRANSIENT MIXE...
- Author(s) : SAMMAKIA B., CAREY V. P., GEBHART B.
- Date : 1985
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 28 - n. 10
View record
-
TURBULENT MIXED CONVECTION ALONG A VERTICAL PLATE.
- Author(s) : CHEN T. S., ARMALY B. F., ALI M. M.
- Date : 1987/02
- Languages : English
- Source: J. Heat Transf. - vol. 109 - n. 1
View record
-
THERMAL BOUNDARY LAYER EQUIVALENT TO CONVECTIVE...
- Author(s) : YAMAGUCHI H., NAKANE Y., KAMBAYASHI H.
- Date : 1988
- Languages : Japanese
- Source: Transaction of the Society of Heating, Air-conditioning and Sanitary Engineers of Japan - n. 36
View record
-
Development of flat-plate thermal and velocity ...
- Author(s) : KONDJOYAN A., PÉNEAU F., BOISSON H. C.
- Date : 2004/11
- Languages : English
- Source: International Journal of thermal Sciences - vol. 43 - n. 11
View record
-
A NEW TYPE OF BOUNDARY CONDITION IN CONVECTIVE ...
- Author(s) : DORFMAN A. S.
- Date : 1985
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 28 - n. 6
View record