
@Article{cmes.2023.029351,
AUTHOR = {Mirza Naveed Jahangeer Baig, Nadeem Salamat, Sohail Nadeem, Naeem Ullah, Mohamed Bechir Ben Hamida, Hassan Ali Ghazwani, Sayed M. Eldin, A. S. Al-Shafay},
TITLE = {Flow Breakdown of Hybrid Nanofluid on a Rigid Surface with Power Law Fluid as Lubricated Layers},
JOURNAL = {Computer Modeling in Engineering \& Sciences},
VOLUME = {138},
YEAR = {2024},
NUMBER = {2},
PAGES = {1485--1499},
URL = {http://www.techscience.com/CMES/v138n2/54594},
ISSN = {1526-1506},
ABSTRACT = {This work investigates an oblique stagnation point flow of hybrid nanofluid over a rigid surface with power law fluid as lubricated layers. Copper (Cu) and Silver (Ag) solid particles are used as hybrid particles acting in water <i>H<sub>2</sub>O</i> as a base fluid. The mathematical formulation of flow configuration is presented in terms of differential system that is nonlinear in nature. The thermal aspects of the flow field are also investigated by assuming the surface is a heated surface with a constant temperature <i>T</i>. Numerical solutions to the governing mathematical model are calculated by the RK45 algorithm. The results based on the numerical solution against various flow and thermal controlling parameters are presented in terms of line graphs. The specific results depict that the heat flux increases over the lubricated-indexed parameter.},
DOI = {10.32604/cmes.2023.029351}
}



