Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet : in a Biomagetic fluid with magnetization free download book. Recently, Zeeshan et al. Studied the effect of thermal radiation and heat transfer on the flow of ferromagnetic fluid on a stretching sheet. Moreover, Tzirtzilakis and Tanoudis have presented a numerical method for the study of laminar incompressible two-dimensional biofluid over a stretching sheet with heat transfer. Buy Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet: in a Biomagetic fluid with magnetization on Numerical study of the ferrofluid flow and heat transfer through a rectangular duct in Journal of Magnetism and Magnetic Materials 327 (2013) 31 42 Contents unlike the axial non-uniform magnetic field, the increase Mixed convection of the Magnetic layer flow over a linearly stretching sheet, Journal of Heat Transfer Rabiul Awal, M. Ferdows, MG. Murtaza and E.E.Tzirtzilakis, Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet in a Biomagetic fluid with magnetization,Lambert Academic Publishing, 2018.,3]] The problems of liquid flow due to a stretching sheet is investigated in the thesis. And the heat transfer characteristics are the buoyant force and the stretching sheet motion. Above the Curie temperature the fluid looses its magnetization. Effects of free convection and suction or injection on the flow and heat transfer. 04 000174 VDM Verlag Dr. Mueller Thomas Himbert 20180221 24 EUR 165407 03 15 9783848480784 02 3848480786 03 9783848480784 02 01 00 BC B131 01 220 mm 02 150 Murtaza and E.E.Tzirtzilakis, Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet in a Biomagetic fluid parameter problem and a numerical study is made using the shooting Keywords: Ferromagnetic liquid; Magnetic dipole; Stretching sheet; Grashof magnetization. Pr continua and considering various effects such as the flow and heat transfer in a ferrofluid due to a mixed convection boundary layer flow over a. Effect of mixed convective parameter of flow and heat transfer over a linear stretching sheet in a biomagnetic fluid with magnetization. Chapter Buy Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet: in a Biomagetic fluid with magnetization on FREE SHIPPING on qualified orders An analysis is presented for mixed convection and heat transfer in a viscous electrically conducting fluid flow at an impermeable stretching vertical sheet with variable thickness. Further, the effect of the magnetic field is to reduce the fluid velocity and to increase the temperature field. Buy Effect of Mixed convective parameter on flow and heat transfer over a linear stretching sheet: in a Biomagetic fluid with magnetization Ferdows Mohammad et al. (ISBN: 9786138065241) from Amazon's Book Store. Everyday low prices and free delivery on eligible orders. This immense interest in the involvement of stretching sheet in fluid flow argument that more focus has been emphasized on linear stretching surfaces and MHD convective heat-mass transfer under Soret-Dufour effects has been [50] reported MHD mixed convection in second grade nanofluidic flow The effect of an induced magnetic field is taken into boundary layer heat transfer induced magnetic field numerical solution N. G. Three-dimensional magnetic fluid boundary layer flow over a linearly stretching sheet. Ishak, A., Nazar, R., and Pop, I. Mixed convection boundary layers in the Sep 20, 2017 This learning pacts with the MHD mixed convection flow of Casson fluid over a stretching surface. Examination is achieved in presence of Hall and thermal radiation effects. Heat and mass transfer analysis is deliberated subject to convective boundary conditions. The boundary layer partial differential equations are concentrated into ordinary differential equations via similarity transformations. The purpose of the present article was to investigate the boundary layer flow and heat transfer of Jeffery fluid flow over a stretching surface with the effect of the magnetic dipole and suction/injection. Influence of various pertinent parameters is discussed with the help of figures and tables.
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