Impact of variable thermal conductivity on flow of trihybrid nanofluid over a stretching surface

被引:6
|
作者
Jan, Saeed Ullah [1 ]
Khan, Umar [2 ]
Islam, Saeed [1 ]
Ayaz, Muhammad [1 ]
机构
[1] Abdul Wali Khan Univ, Dept Math, Mardan, Pakistan
[2] Hazara Univ, Dept Math & Stat, Mansehra, Pakistan
关键词
trihybrid nanofluid; variable thermal conductivity; stretching surface; magnetic field; injection/suction; numerical solution; HEAT-TRANSFER;
D O I
10.1088/1361-6528/acedb4
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The present article describes the impact of variable thermal conductivity on the flow of ternary hybrid nanofluid with cylindrical shape nanoparticles over a stretching surface. Three nanoparticles combine in base fluid polymer. The assumption made will be used to model an equations. Modeled equations are in the form of a system of partial differential equations are difficult to solve can be converted to system of an ordinary differential equations, through resemblance substitutions, and will be solved numerically. Numerical scheme of Runge-Kutta order four is coupled with the shooting method to solve the resulting equations. The graphs in the study illustrate how physical quantities, such as magnetic field, injection/suction, nanoparticles volume fraction, and variable thermal conductivity, affected the velocity, skin friction, temperature, and local Nusselt number. The velocity profiles deflate as the volume fraction rises. While the temperature rises with an increase in the volume fraction of nanoparticles for both injection and suction, the velocity profiles also decline as the injection and suction parameter increases. Furthermore, as the magnetic field increases, the temperature profile rises while the velocity profile falls. The temperature curves increase as thermal conductivity increases. Finally, as the magnetic field is strengthened, the Nusselt number and skin friction decrease. The combination of mathematical modeling, numerical solution techniques, and the analysis of physical quantities contributes to the advancement of knowledge in this ternary hybrid nanofluid.
引用
收藏
页数:10
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