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A lubricated stagnation point flow of nanofluid with heat and mass transfer phenomenon: Significance to hydraulic systems
Institution:1. College of Art and Design, University of Tabuk, Saudi Arabia;2. Higher Institute for Technological Studies Ksar Hellal, University of Monastir, Tunisia;3. Department of Mathematics, COMSATS University Islamabad, Sahiwal, 57000, Pakistan;4. Department of Mathematics, University of Wah, Wah Cantt, 47040, Pakistan;5. HONG Kong Baptist University Kowloon Tong Kowloon, Hong Kong;6. Department of Industrial Engineering and Systems, College of Engineering, Princess Nourah Bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi Arabia;7. Department of Mechanical Engineering, College of Engineering, University of Hai’l, Hai’l City, Saudi Arabia;8. Laboratory of Metrology and Energy Systems, University of Monastir, 5000, Monastir, Tunisia;9. Department of Mathematics, University of Azad Jammu and Kashmir Muzaffarabad, 13100, Pakistan
Abstract:The improved thermal association of heat transfer is considerably observed due to interaction of nanoparticles in recent days. The lubrication phenomenon with heat and mass transfer effects plays a key role in the hydraulic systems. In current research, the thermal impact of nanofluid over a lubricated stretching surfaces near a stagnation point analytical has been studied. A thin layer of lubricating fluid with a variable thickness provides lubrication. The inspection of thermophoresis and Brownian motion phenomenon is illustrated via Boungrino model. The analytical finding of refurbished boundary layer ordinary differential equations is obtained by a reliable and proficient technique namely variational iteration method (VIM). The Lagrange Multiplier is a potent tool in proposed technique to reduce the computational work. In addition, a numerical comparison is presented to show the effectiveness of this study. The range of flow parameters is based on theoretical flow assumptions. Physical inspection of involved parameters on velocities, temperatures, concentrations, and other quantities of interest when lubrication is presented. The current results present applications in polymer process, manufacturing systems, heat transfer and hydraulic systems.
Keywords:Heat and mass transfer  Nanofluid  Stagnation point flow  Lubricated stretching surface
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