Effect of Thermal Radiation on Three-Dimensional Magnetized Rotating Flow of a Hybrid Nanofluid

被引:41
作者
Asghar, Adnan [1 ]
Lund, Liaquat Ali [2 ]
Shah, Zahir [3 ]
Vrinceanu, Narcisa [4 ]
Deebani, Wejdan [5 ]
Shutaywi, Meshal [5 ]
机构
[1] Univ Utara Malaysia, Sch Quantitat Sci, Sintok 06010, Kedah, Malaysia
[2] Sindh Agr Univ, KCAET Khairpur Mirs, Tandojam Sindh 70060, Pakistan
[3] Univ Lakki Marwat, Dept Math Sci, Lakki Marwat 28420, Pakistan
[4] Lucian Blaga Univ Sibiu, Dept Ind Machines & Equipments, Fac Engn, 10 Victoriei Blvd, Sibiu 5500204, Romania
[5] King Abdulaziz Univ, Coll Arts & Sci, Dept Math, Rabigh 21911, Saudi Arabia
关键词
thermal radiation; hybrid nanofluid; Joule heating; radiation; dual solution; BOUNDARY-LAYER-FLOW; HEAT-TRANSFER; DUAL SOLUTIONS; STRETCHING SHEET; STABILITY ANALYSIS; MIXED CONVECTION; MHD FLOW; SURFACE;
D O I
10.3390/nano12091566
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The effect of thermal radiation on the three-dimensional magnetized rotating flow of a hybrid nanofluid has been numerically investigated. Enhancing heat transmission is a contemporary engineering challenge in a range of sectors, including heat exchangers, electronics, chemical and biological reactors, and medical detectors. The main goal of the current study is to investigate the effect of magnetic parameter, solid volume fraction of copper, Eckert number, and radiation parameter on velocity and temperature distributions, and the consequence of solid volume fraction on declined skin friction and heat transfer against suction and a stretching/shrinking surface. A hybrid nanofluid is a contemporary type of nanofluid that is used to increase heat transfer performance. A linear similarity variable is-applied to convert the governing partial differential equations (PDEs) into corresponding ordinary differential equations (ODEs). Using the three-stage Labatto III-A method included in the MATLAB software's bvp4c solver, the ODE system is solved numerically. In certain ranges of involved parameters, two solutions are received. The temperature profile theta(eta) upsurges in both solutions with growing values of EC and Rd. Moreover, the conclusion is that solution duality exists when the suction parameter S >= S-ci , while no flow of fluid is possible when S < S-ci . Finally, stability analysis has been performed and it has been found that only the first solution is the stable one between both solutions.
引用
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页数:15
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