Exact solutions for the unsteady rotational flow of a generalized second grade fluid through a circular cylinder

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Abstract

Here the velocity field and the associated tangential stress corresponding to the rotational flow of a generalized second grade fluid within an infinite circular cylinder are determined by means of the Laplace and finite Hankel transforms. At time t = 0 the fluid is at rest and the motion is produced by the rotation of the cylinder around its axis with a time dependent angular velocity ωt. The solutions that have been obtained are presented under series form in terms of the generalized G-functions. The similar solutions for the ordinary second grade and Newtonian fluids, performing the same motion, are obtained as special cases of our general solution.

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Kamran, M., Imran, M., & Athar, M. (2010). Exact solutions for the unsteady rotational flow of a generalized second grade fluid through a circular cylinder. Nonlinear Analysis: Modelling and Control, 15(4), 437–444. https://doi.org/10.15388/na.15.4.14315

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