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Helical flows of second grade fluid due to constantly accelerated shear stresses
Institution:1. School of Mathematical Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia;2. Mathematics Department, American International University-Bangladesh, Banani, Dhaka, Bangladesh;3. Aeronautical and Mechanical Engineering Department, School of Computing, Science and Engineering, Newton Building, University of Salford, M54WT, UK;1. Department of Mathematics, Air University, Islamabad, Multan 66000, Pakistan;2. Department of Mathematics, Air University, Islamabad, 44000, Pakistan;3. Department of Mathematics, COMSATS University Islamabad, Vehari, Pakistan;4. Department of Mathematics, College of Sciences, King Khalid University, Abha 61413, Saudi Arabia
Abstract:The helical flows of second grade fluid between two infinite coaxial circular cylinders is considered. The motion is produced by the inner cylinder that at the initial moment applies torsional and longitudinal constantly accelerated shear stresses to the fluid. The exact analytic solutions, obtained by employing the Laplace and finite Hankel transforms and presented in series form in term of usual Bessel functions of first and second kind, satisfy both the governing equations and all imposed initial and boundary conditions. In the limiting case when α  0, the solutions for Newtonian fluid are obtained for the same motion. The large-time solutions and transient solutions for second grade fluid are also obtained, and effect of material parameter α and kinematic viscosity ν is discussed. In the last, the effects of various parameters of interest on fluid motion as well as the comparison between second grade and Newtonian fluids are analyzed by graphical illustrations.
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