DocumentCode
1671917
Title
Finite element analysis of MHD mixed convection heat transfer enhancement of a heat-generating block in a double lid-driven enclosure filled with air at different vertical location
Author
Billah, M.M. ; Rahman, M.M. ; Uddin, M.S. ; Shahabuddin, M.
Author_Institution
Dept. of Arts & Sci., Ahsanullah Univ. of Sci. & Technol. (AUST), Dhaka, Bangladesh
fYear
2011
Firstpage
93
Lastpage
97
Abstract
The present numerical study is conducted to investigate MHD mixed convection flow and heat transfer characteristics in a double-lid driven cavity with a heat-generating solid square block. The cavity horizontal walls are adiabatic while both the vertical lids are maintained at a uniform temperature Tc and velocity V0. The present study simulates a reasonable system such as air-cooled electronic equipment with a heat component or an oven with heater. Emphasis is sited on the influences of the position of the block in the cavity. The transport governing equations are solved employing the finite element formulation based on the Galerkin method of weighted residuals. The computation is carried out for a wide range of relevant parameters such as location of the block and Richardson number. Results are presented for the effect of aforesaid parameters on the contours of streamline and isotherm. Besides, the heat transfer rate in terms of the average Nusselt number and temperature of the fluid and block center are offered for the mentioned parametric values. The obtained results demonstrate that the flow and thermal field are strongly influenced by the above mentioned parameters.
Keywords
Galerkin method; computational fluid dynamics; confined flow; convection; finite element analysis; magnetohydrodynamics; Galerkin method; MHD mixed convection heat transfer; Nusselt number; Richardson number; air-cooled electronic equipment; double lid-driven enclosure; finite element analysis; heat component; heat-generating block; transport equations; Fluids; Heat engines; Heating; Magnetohydrodynamics; Solids; Double-lid driven enclosure; finite element simulation; mixed convection; solid square block;
fLanguage
English
Publisher
ieee
Conference_Titel
Clean Energy and Technology (CET), 2011 IEEE First Conference on
Conference_Location
Kuala Lumpur
Print_ISBN
978-1-4577-1353-8
Type
conf
DOI
10.1109/CET.2011.6041443
Filename
6041443
Link To Document