Thermal improvement in magnetized nanofluid for multiple shapes nanoparticles over radiative rotating disk

被引:39
作者
Adnan [1 ]
Khan, Umar [2 ]
Ahmed, Naveed [3 ]
Mohyud-Din, Syed Tauseef [4 ]
Alharbi, Sayer O. [5 ]
Khan, Ilyas [5 ]
机构
[1] Mohi Ud Din Islamic Univ, Dept Math, Nerian Sharif, Aj&k, Pakistan
[2] Hazara Univ Mansehra, Dept Math & Stat, Mansehra, Pakistan
[3] HITEC Univ Taxila Cantt, Fac Sci, Dept Math, Rawalpindi, Pakistan
[4] Univ Multan, Multan, Pakistan
[5] Majmaah Univ, Coll Sci Al Zulfi, Dept Math, Al Majmaah 11952, Saudi Arabia
关键词
Rotating disk; MHD; Thermal radiation; Thermal conductivity; Runge-Kutta scheme; Shear stresses; VARIATIONAL ITERATION METHOD; MHD FREE-CONVECTION; HEAT-TRANSFER; VERTICAL PLATE; FLOW; FLUID;
D O I
10.1016/j.aej.2021.07.021
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the present time, thermal transportation in the colloidal suspensions under various scenario becomes an influential research direction due to their extensive applications. Therefore, investigation of thermal transport over a rotating disk under the impacts of thermal and velocity slip, imposed Lorentz forces and thermal radiation is conducted for multiple shape effects of the nanomaterial. The nanofluid model suspended by Al2O3, TiO2 and Cu nanomaterial is reduced in dimensionless version via similarity variables. After that, RK scheme is implemented and handle the model effectively. The outcomes of various parameters for the velocity, thermal transport, skin friction and local heat transport are sketched and explained broadly. It is examined that the heat transport for the nanofluids becomes dominant throughout the analysis in comparison with conventional liquid. The temperature of the nanofluids significantly enhances due to the velocity slip effects. Moreover, thermal radiation and the volumetric fraction of the nanomaterials favor the local heat transfer rate. (C) 2021 THE AUTHORS. Published by Elsevier BV on behalf of Faculty of Engineering, Alexandria University.
引用
收藏
页码:2318 / 2329
页数:12
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