corner heater
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Energies ◽  
2018 ◽  
Vol 11 (10) ◽  
pp. 2507 ◽  
Author(s):  
Ammar Alsabery ◽  
Tahar Tayebi ◽  
Ali Chamkha ◽  
Ishak Hashim

This study investigates numerically the effect of the two-phase nanofluid model due to natural convection within a square cavity along with the existence of a conducting solid block, and a corner heater using the finite difference method (FDM). The top horizontal wall is retained at a cold temperature that is fixed as constant, while the isothermal heater is positioned at the bottom left corner within the square cavity. The remaining fractions of the right vertical wall and the heated wall are set to be adiabatic. The water-based nanofluid, together with Al 2 O 3 nanoparticles, have been evaluated by determining the following parameters: the volume fraction of nanoparticles, thickness of solid block, Rayleigh number, and the solid block thermal conductivity. As a result, the comparative evaluation with outputs reported in publications and prior experimental works has pointed out exceptional agreement with the findings retrieved in this study. The experimental outcomes are graphically illustrated in terms of the average and local Nusselt numbers, isotherms, distribution of nanoparticles, and the streamlines. The findings indicate that an elevation of the thermal conductivity in blocks with a similar size successfully increases the transfer rate of heat, wherein the dominance of conduction has been observed.


2018 ◽  
Vol 08 (03) ◽  
pp. 245-258 ◽  
Author(s):  
M. Jahirul Haque Munshi ◽  
Golam Mostafa ◽  
A. B. S. Manik Munsi ◽  
Md. Waliullah

2017 ◽  
Vol 194 ◽  
pp. 442-449 ◽  
Author(s):  
M. Jahirul Haque Munshi ◽  
M.A. Alim ◽  
A.H. Bhuiyan ◽  
M. Ali

2016 ◽  
Vol 28 (5) ◽  
pp. 873-885 ◽  
Author(s):  
Mikhail A. Sheremet ◽  
Ioan Pop ◽  
Hakan F. Öztop ◽  
Nidal Abu-Hamdeh

Author(s):  
Sameh E Ahmed ◽  
Hakan F. Öztop ◽  
Khaled Al-Salem

Purpose – The purpose of this paper is to investigate the effects of magnetic field and viscous dissipation on mixed convection heat transfer, fluid flow and entropy generation in a porous media filled square enclosure heated with corner isothermal heater. Design/methodology/approach – Finite volume method has been used to solve governing equations. A code is developed by FORTRAN and entropy generation is calculated from the obtained results of velocities and temperature. Results are presented via streamlines, isotherms, local and mean Nusselt number for different values of Richardson number (0.001=Ri=100), Hartmann number (0.001=Ha=100), Darcy number (0.001=Da=0.1), length of heaters (0.25=hx=hy=0.75) and viscous dissipation factors (10−4=ε=10−6). Findings – It is observed that entropy is generated mostly due to lid-driven wall and right side of the heater. Entropy generation decreases with increasing of Hartmann number and heat transfer increases with decreasing of viscous parameter. Originality/value – The originality of this work is to application of magnetic field and viscous dissipation on entropy generation in a lid-driven cavity with corner heater. Here, both corner heater and the external forces are original parameters.


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