Optimization of heat transfer properties on ferrofluid flow over a stretching sheet in the presence of static magnetic field

被引:0
作者
Anupam Bhandari
Akmal Husain
机构
[1] University of Petroleum and Energy Studies (UPES),Department of Mathematics, School of Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2021年 / 144卷
关键词
Magnetic dipole; Stretching sheet; Ferrofluid; Heat and mass transfer;
D O I
暂无
中图分类号
学科分类号
摘要
The main emphasis of the present research is to investigate the composite effects of magnetization force and rotational viscosity on two-dimensional ferrohydrodynamic non-conducting nanofluid flow over a stretching sheet under the influence of the stationary magnetic field. Microrotation of magnetic fluid and rotation of nanoparticles are also considered. Shliomis model is used in the problem formulation, and then the similarity transformation is applied to transform partial differential equations into a set of nonlinear-coupled ordinary differential equations in dimensionless form. Transformed nonlinear-coupled differential equations are solved through the finite element method using COMSOL Multiphysics under the mathematical modeling. Results for velocity distribution, temperature distribution, concentration distribution and angular velocity distribution are obtained after considering the effects of Maxwell parameter, ferromagnetic interaction number, thermal Grashof number, solutal Grashof number, Brownian motion parameter, thermophoresis number, chemical reaction parameter, radiation absorption coefficient, heat generation/absorption parameter, Prandtl number and Schmidt number in the flow. It has been observed that magnetic energy transforms into kinetic energy, thermal boundary layer and concentration boundary layer in the presence of considered physical parameters.
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页码:1253 / 1270
页数:17
相关论文
共 118 条
[1]  
Neuringer JL(1964)Ferrohydrodynamics Phys Fluids 7 1927-1937
[2]  
Rosensweig RE(1966)Some viscous flows of a saturated ferro-fluid under the combined influence of thermal and magnetic field gradients Int J Non Linear Mech 1 123-137
[3]  
Neuringer JL(1998)Flow of a heated ferrofluid over a stretching sheet in the presence of a magnetic dipole Acta Mech 128 39-47
[4]  
Andersson HI(2016)Heat transfer analysis of Jeffery fluid flow over a stretching sheet with suction/injection and magnetic dipole effect Alex Eng J 55 2171-2181
[5]  
Valnes OA(2019)Effect of different frequency functions on ferrofluid FHD flow J Magn Magn Mater 480 112-131
[6]  
Zeeshan A(2019)Heat transfer of the MHD nanofluid in porous microtubes under the electrokinetic effects Int J Heat Mass Transf 130 821-830
[7]  
Majeed A(2011)Numerical study of heat transfer enhancement in mixed convection flow along a vertical plate with heat source/sink utilizing nanofluids Commun Nonlinear Sci Numer Simul 16 4318-4334
[8]  
Salehpour A(2008)Review and comparison of nanofluid thermal conductivity and heat transfer enhancements Heat Transf Eng 29 432-460
[9]  
Ashjaee M(2006)Convective transport in nanofluids J Heat Transf 128 240-831
[10]  
Zhao G(2018)Numerical simulation for impact of Coulomb force on nanofluid heat transfer in a porous enclosure in presence of thermal radiation Int J Heat Mass Transf 118 823-192