Entropy generation analysis of a nanofluid flow in MHD porous microchannel with hydrodynamic slip and thermal radiation

被引:101
|
作者
Ibanez, Guillermo [1 ]
Lopez, Aracely [1 ]
Pantoja, Joel [1 ]
Moreira, Joel [1 ]
机构
[1] Univ Ciencias & Artes Chiapas, Libramiento Norte Poniente 1150,Col Lajas Maciel, Tuxtla Gutierrez 29039, Chiapas, Mexico
关键词
MHD nanofluid flow; Porous microchannel; Entropy generation; INTERNAL HEAT-GENERATION; NAVIER SLIP; STRETCHING/SHRINKING SHEET; MAGNETOHYDRODYNAMIC FLOW; FLUID-FLOW; CHANNEL; TEMPERATURE; PERFORMANCE; MINIMIZATION; SURFACE;
D O I
10.1016/j.ijheatmasstransfer.2016.04.089
中图分类号
O414.1 [热力学];
学科分类号
摘要
Combined effects of hydrodynamic slip, magnetic field, suction/injection, thermal radiation, nanoparticle volume fraction and convective boundary conditions on the heat transfer and global entropy generation in a viscous electrically conducting nanofluid flow through a microchannel with permeable plates are studied. Analytical solutions of the momentum and the energy equations are obtained in closed form. Particularly, considering the radiative term, joule heating and viscous dissipation in the energy equation, the temperature field of the nanofluid is derived analytically. Influences of pertinent parameters on global entropy generation are discussed in detail and depicted graphically. Analysis of our results indicates that entropy generation minimization can be achieved by appropriate combination of the geometrical and physical parameters of the system. It is possible to determine optimum values of radiation parameter, nanoparticle volume fraction, Hartmann and Biot numbers which lead to a minimum global entropy generation rate. The Nusselt number is also calculated and explored for different conditions. Optimum values of nanoparticle volume fraction and magnetic field strength that maximize heat transfer are derived. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:89 / 97
页数:9
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