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Explicit finite difference simulations for accelerating cross diffusion flow over a perpendicular shield with parabolic motion
Affiliation:1. Department of Humanities and Sciences, AITS, Rajampet, Andhra Pradesh, India;2. Department of Mathematics, Siddharth Institute of Engineering and Technology, Putturu, 517583, A. P., India;3. University of Monastir, National Engineering School, Research Laboratory of Metrology and Energy Systems, LR18ES21, 5000, Monastir, Tunisia;4. Department of Engineering Mathematics, College of Engineering, Koneru Lakshmaiah Education Foundation, Vaddeswaram, AP, India;5. Department of Humanities and Sciences Annamachaarya Institute of Technology & Sciences, Rajampet, A. P., India;6. Department of Mathematics, COMSATS University Islamabad, Sahiwal Campus, Pakistan;7. Department of Mechanical Engineering, College of Engineering, University of Ha''il, Ha''il City, Saudi Arabia
Abstract:
The heat transfer phenomenon subject to thermos-diffusion effects convey important applications in the heating processes, extrusion systems, chemical processes and various engineering systems. The objective of current work is to observe the contribution of Soret and Dufour effects in oscillating shield for cross diffusion flow. The perpendicular shield with oscillating motion induced the flow. The magnitude of oscillations is assumed to be small so that laminar flow due to oscillating shield has been resulted. The motivations for addressing the thermos-diffusion phenomenon due to oscillating of shield are due to applications in oscillatory pumps, moving surface, metal detectors, power systems etc. The dimensionless problem is obtained via introducing the appropriate set of variables. The numerical outcomes are suggested by using the most interesting explicit finite difference scheme. The physical illustration for flow parameters is presented. Moreover, the aspect of physical quantities involving the flow are graphically reported.
Keywords:Perpendicular shield  Oscillating flow  Parabolic motion  Soret and dufour effects  Explicit finite difference scheme
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