Non-linear convective flow of the thin film nanofluid over an inclined stretching surface

被引:32
作者
Saeed, Anwar [1 ]
Kumam, Poom [1 ,2 ]
Nasir, Saleem [3 ]
Gul, Taza [3 ]
Kumam, Wiyada [4 ]
机构
[1] King Mongkuts Univ Technol Thonburi KMUTT, Fac Sci, Ctr Excellence Theoret & Computat Sci TaCS CoE, 126 Pracha Uthit Rd, Bangkok 10140, Thailand
[2] China Med Univ, China Med Univ Hosp, Dept Med Res, Taichung 40402, Taiwan
[3] City Univ Sci & Informat Technol, Dept Math, Peshawar, Pakistan
[4] Rajamangala Univ Technol Thanyaburi, Appl Math Sci & Engn Res Unit AMSERU, Fac Sci & Technol, Program Appl Stat,Dept Math & Comp Sci, Thanyaburi 12110, Pathumthani, Thailand
关键词
NON-NEWTONIAN FLUIDS; BROWNIAN-MOTION; HEAT-TRANSFER; LIQUID-FILM; THERMAL-RADIATION; MAXWELL FLUID; MASS-TRANSFER; THERMOPHORESIS; SHEET; IMPACT;
D O I
10.1038/s41598-021-97576-x
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
To enhance the surface properties of solids the mechanism of thin films is frequently used. Penetration, degradation, stiffness, illumination, diffusion, absorption, and electric performance are all characteristics of a bulk substance medium that a thin film can improve. In nanotechnology, thin film processing can be extremely useful. Therefore, the time-dependent nonlinearly convective stream of thin film nanoliquid over an inclined stretchable sheet with magnetic effect is investigated in current work. The features of mass and heat transport processes are explained using important factors like thermophoresis and Brownian movement. Nonlinear partial differential equations are obtained to model the time-dependent liquid film flow over an inclined surface, which are then turned into couple ordinary differential equations utilizing appropriate alterations. The results of the computation of the model problem are collected using an analytical approach Homotopy Analysis Method and presented the final finding numerically and graphically. During the flow assessment, the impact of individual flow factors such as magnetic, Brownian, and thermophoresis parameters on regular profiles (temperature, velocity, and concentration) are analyzed and found to be quite remarkable. Furthermore, the consequence of M and N-t factors on the velocity, concentration and thermal distribution leads to diminishing conduct. On the other hand, the thermal profile of the liquid film rises in response to the thermophoresis factor. The % wise variation in the skin friction, Nusselt number and Sherwood number versus physical parameters has been obtained and discussed.
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页数:15
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