maxwell nanoliquid
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Heat Transfer ◽  
2021 ◽  
Author(s):  
Farhan Ali ◽  
Cherlacola Srinivas Reddy ◽  
Nehad Summayya ◽  
Muhammad Faizan Ahmed


2019 ◽  
Vol 29 (8) ◽  
pp. 2809-2821 ◽  
Author(s):  
Muhammad Waqas ◽  
M. Mudassar Gulzar ◽  
Waqar Azeem Khan ◽  
Muhammad Ijaz Khan ◽  
Niaz B. Khan

Purpose This paper aims to elaborate the characteristics of magneto-Maxwell nanoliquid toward moving radiated surface. Flow analysis subject to Darcy–Forchheimer concept is studied. Newtonian heat/mass conditions and heat source aspects are taken into account for modeling. Apposite transformations are introduced for non-dimensionalization process. Design/methodology/approach Optimal homotopy analysis method is implemented to compute convergent solutions of nonlinear ordinary differential equations. Findings Temperature field increments when thermophoresis, heat generation and Brownian movement parameters are increased, whereas reverse situation is noticed for larger Prandtl number. The results also witness that concentration distribution has opposite characteristics for larger thermophoresis and Brownian movement parameters. Furthermore, the presented analysis reduces to traditional Darcy relation in the absence of local inertia coefficient. Originality/value As per the authors’ knowledge, no such analysis has been yet reported.



2019 ◽  
Vol 134 (5) ◽  
Author(s):  
Mair Khan ◽  
T. Salahuddin ◽  
M. Y. Malik ◽  
Farzana Khan


Author(s):  
G. K. Ramesh ◽  
G. S. Roopa ◽  
B. J. Gireesha ◽  
S. A. Shehzad ◽  
F. M. Abbasi


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