melting heat
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2022 ◽  
Vol 45 ◽  
pp. 103780
Author(s):  
Xinmei Luo ◽  
Jiaan Gu ◽  
Hongqiang Ma ◽  
Yue Xie ◽  
Anying Li ◽  
...  

Heat Transfer ◽  
2021 ◽  
Author(s):  
Navin Kumar ◽  
Ram Niwas Jat ◽  
Sharad Sinha ◽  
Praveen Kumar Dadheech ◽  
Priyanka Agrawal ◽  
...  

Author(s):  
K. Muhammad ◽  
T. Hayat ◽  
A. Alsaedi

Abstract This analysis emphasizes impacts of CNTs (Carbon nanotubes) during Darcy–Forchheimer squeezed flow. Melting heat transfer process is addressed. Water and gasoline are treated as baseliquid. By transformation method non-linear system of ODEs are obtained from the flow field equations (PDEs). Further the emerged flow problem is solved via OHAM. Influences of physical involved parameters on velocity, surface friction coefficient, temperature as well as Nusselt number are expressed graphically and interpreted physically.


Mathematics ◽  
2021 ◽  
Vol 9 (23) ◽  
pp. 3092
Author(s):  
Kohilavani Naganthran ◽  
Roslinda Nazar ◽  
Zailan Siri ◽  
Ishak Hashim

Melting heat transfer has a vital role in forming energy storage devices such as flexible thin film supercapacitors. This idea should be welcomed in the thin film theoretical models to sustain technological advancement, which could later benefit humankind. Hence, the present work endeavors to incorporate the melting heat transfer effect on the Carreau thin hybrid nanofluid film flow over an unsteady accelerating sheet. The mathematical model that obeyed the boundary layer theory has been transformed into a solvable form via an apt similarity transformation. Furthermore, the collocation method, communicated through the MATLAB built-in bvp4c function, solved the model numerically. Non-uniqueness solutions have been identified, and solutions with negative film thickness are unreliable. The melting heat transfer effect lowers the heat transfer rate without affecting the liquid film thickness, while the Carreau hybrid nanofluid contributes more entropy than the Carreau nanofluid in the flow regime.


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