Heat Transfer in Magnetohydrodynamic Convective Flow of Hybrid Nanofluid Over a Revolving Cone with Heat Generation/Absorption

被引:2
作者
Hakeem, A. K. Abdul [1 ]
Kirusakthika, S. [2 ]
Ganga, B. [3 ]
Renuka, P. [4 ]
机构
[1] Sri Ramakrishna Mission Vidyalaya Coll Arts & Sci, Dept Math, Coimbatore 641020, India
[2] Sri Krishna Arts & Sci Coll, Coimbatore 641008, India
[3] Providence Coll Women, Dept Math, Coonoor 643104, India
[4] KPR Inst Engn & Technol, Dept Math, Coimbatore 641407, India
关键词
Rotating; Magnetic Field; Casson Fluid; Heat Generation; MIXED CONVECTION; MASS-TRANSFER; POROUS-MEDIUM; MHD FLOW; 2ND-GRADE FLUID; ROTATING FLOW; VERTICAL CONE; UNSTEADY; SOURCE/SINK; PLATE;
D O I
10.1166/jon.2023.2069
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The contemporary study's goal is to investigate the role of the Casson hybrid nanofluid on boundary layer flow and heat transfer over a vertical rotating cone using various base fluids. The dynamic effects of the magnetic field and heat generation/absorption are taken into account in the modeling of hybrid nanofluids. Flow -related PDEs are remodeled to ODEs through use of similarity transmutations. Furthermore, the numerical results are explained using the fourth order Runge-Kutta scheme in conjunction with the shooting technique. The solution depends on a Lorentz force, Casson parameter, heat generation/absorption and spin parameter. The dependency of the skin friction coefficient and local Nusselt number on these four parameters is numerically explored. To the best of the author's knowledge, the presence of three types of hybrid nanoparticles (Al2O3- TiO2, TiO2-Cu and Al2O3-Cu) with Newtonian/non-Newtonian base fluids has not yet been examined. The findings of the study reveal that increasing the magnetic parameter values reduces flow velocities (tangential IP: 203.8.109.20 On: Tue, 16 Apr 2024 14:30:17 and swirl) and increases the tangential velocity profile of Newtonian based hybrid nanofluid. Additionally, the Copyright: American Scientific Publishers thermal profile and non -Newtonian based hybrid nanofluid indicate a rising trend in heat generation/absorption Delivered by Ingenta parameter. Furthermore, the thermal transfer rate of water -based hybrid nanofluid is increased, while the skin friction coefficient reverses.
引用
收藏
页码:2297 / 2309
页数:13
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