Numerical Simulation of Nature Convection and Heat Transfer of the Liquid LiPb in Cubic Enclosure with a Magnetic Field

2010 ◽  
Vol 85 (7-9) ◽  
pp. 1215-1219 ◽  
Author(s):  
H.Y. Wang ◽  
X.D. Zhang ◽  
K.K. Ding ◽  
W. Wang
2001 ◽  
Vol 79 (7) ◽  
pp. 1031-1038 ◽  
Author(s):  
E M Abo-Eldahab ◽  
M S El Gendy

In the present study, free-convection and heat-transfer behavior of an electrically conducting fluid is investigated near a stretching sheet embedded in a non-Darcian medium. The temperature of the stretching sheet is varied. The sheet is stretched linearly with variable velocity and temperature. Boundary-layer equations are derived. The resulting approximate nonlinear ordinary differential equations are solved numerically. Velocity and temperature profiles as well as the local Nusselt number and skin-friction coefficient are computed for various values of the magnetic field, the Prandtl number, the free convective parameter, and the inertia parameter. PACS No.: 44.30+v


Applied laser ◽  
2014 ◽  
Vol 34 (6) ◽  
pp. 508-512 ◽  
Author(s):  
胡勇 Hu Yong ◽  
陈智君 Chen Zhijun ◽  
王梁 Wang Liang ◽  
姚建华 Yao Jianhua

2020 ◽  
Vol 30 (11) ◽  
pp. 4883-4908 ◽  
Author(s):  
Asmaa F. Elelamy ◽  
Nasser S. Elgazery ◽  
R. Ellahi

Purpose This paper aims to investigate a mathematical model with numerical simulation for bacterial growth in the heart valve. Design/methodology/approach For antibacterial activities and antibodies properties, nanoparticles have been used. As antibiotics are commonly thought to be homogeneously dispersed through the blood, therefore, non-Newtonian fluid of Casson micropolar blood flow in the heart valve for two dimensional with variable properties is used. The heat transfer with induced magnetic field translational attraction under the influence of slip is considered for the resemblance of the heart valve prosthesis. The numeral results have been obtained by using the Chebyshev pseudospectral method. Findings It is proven that vascular resistance decreases for increasing blood velocity. It is noted that when the magnetic field will be induced from the heart valve prosthesis then it may cause a decrease in vascular resistance. The unbounded molecules and antibiotic concentration that are able to penetrate the bacteria are increased by increasing values of vascular resistance. The bacterial growth density cultivates for upswing values of magnetic permeability and magnetic parameters. Originality/value To the best of the authors’ knowledge, this is the first study to investigate a mathematical model with numerical simulation for bacterial growth in the heart valve.


Applied laser ◽  
2014 ◽  
Vol 34 (6) ◽  
pp. 508-512
Author(s):  
胡勇 Hu Yong ◽  
陈智君 Chen Zhijun ◽  
王梁 Wang Liang ◽  
姚建华 Yao Jianhua

Author(s):  
Z. H. Wang ◽  
S. Yang ◽  
H. Chen

Magneto-hydrodynamic (MHD) effects are widely exploited in different industrial processes. MHD play an essential role in nuclear fusion, where it is involved in the behavior of the liquid metal alloys employed in some of the currently considered designs of tritium breeding blankets. Results of numerical simulations are presented for the natural convection of a liquid metal placed in a horizontal cylinder in the presence of a vertical magnetic field. When there is an additional magnetic field, an induced current is produced by the movement of the liquid metal in a magnetic field. Induced current and magnetic field interaction produced a Lorentz force which is opposite to the movement direction and inhibits the natural convection and heat transfer intensity. The numerical results show that the magnetic field has a observable effect at the heat transfer process of the liquid metal natural convection in a horizontal cylinder. An interesting effect of the magnetic field during the internal flow is the deceleration of the flow velocity for liquid Gallium. The magnetic field in the horizontal radial direction, which is perpendicular to the natural convection caused by the temperature gradient all the while, has the most significant influence on the natural convection, while the influence on the axial direction is comparatively weak in medium magnetic field. With the increase of the intensity of magnetic field, the inhibition is more obvious.


RSC Advances ◽  
2019 ◽  
Vol 9 (39) ◽  
pp. 22185-22197 ◽  
Author(s):  
Yeping Peng ◽  
Ali Sulaiman Alsagri ◽  
Masoud Afrand ◽  
R. Moradi

The impact of an axial magnetic field on the heat transfer and nanofluid flow among two horizontal coaxial tubes in the presence of thermal radiation was considered in this study.


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