Analysis of Unsteady Magnetohydrodynamic 3-D Rotating Flow and Transfer of Heat in Carbon Nanotube-Water Nanofluid: An Engineering Application

被引:8
|
作者
Mandal, P. K. [1 ]
Singha, A. K. [2 ]
Kumar, B. [3 ]
Seth, G. S. [2 ]
Sarkar, S. [4 ]
机构
[1] Sarala Birla Univ, Dept Math, Ranchi 835103, Bihar, India
[2] Indian Sch Mines, Dept Math & Comp, Indian Inst Technol, Jharkhand 826004, India
[3] Thapar Inst Engn & Technol, Dept Math, Patiala 147004, Punjab, India
[4] Banwarilal Bhalotia Coll Govt Aided, Dept Math, Asansol 713303, W Bengal, India
关键词
Unsteady MHD Flow; CNT-Water Nanofluid; 3-D Rotation; Nonlinear Thermal Radiation; FREE-CONVECTION FLOW; CASSON FLUID-FLOW; POROUS-MEDIUM; MASS-TRANSFER; STRETCHING SURFACE; THERMAL-RADIATION; MHD FLOW; HYDROMAGNETIC FLOW; NATURAL-CONVECTION; MICROPOLAR FLUID;
D O I
10.1166/jon.2022.1826
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We have analysed unsteady Magnetohydrodynamic (MHD) 3-D rotating flow of Carbon Nanotube (CNT) water nanofluid past a stretching surface dealing with thermal radiation mechanism of heat transfer and heat source/sink. The mathematical model consists of a system of non-linear coupled Partial Differential Equations (PDEs). Numerical solution is obtained and discussed in detail. The influence of flow dominant parameters on the temperature profiles and flow-field are also discussed in detail using tables and graphs. Results are justified by previously published results in the limiting sense. Various crucial results are obtained, for example, unsteadiness parameter accelerates the fluid velocities in both directions near the sheet and reverse behaviour is noticed away from the sheet. However, fluid rotation causes reduction in primary velocity but it tends to accelerate secondary velocity near the sheet. Insertion of nanoparticle volume fraction intensifies fluid velocity and attenuates fluid temperature. We also found that multi-Walled Carbon Nanotubes (MWCNTs) offer more resistance for primary skin friction and less resistance for secondary skin friction when compared with Single-Walled Carbon Nanotubes (SWCNTs).
引用
收藏
页码:204 / 213
页数:10
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