First Exact Solutions for Flows of Rate Type Fluids in a Circular Duct that Applies a Constant Couple to the Fluid

Author:

Fetecau Corina1,Rana Mehwish2,Nigar Niat2,Fetecau Constantin3

Affiliation:

1. Department of Theoretical Mechanics, Technical University of Iasi, Iasi 700050, Romania

2. Abdus Salam School of Mathematical Sciences, GC University, Lahore 54600, Pakistan

3. Department of Mathematics, Technical University of Iasi, Iasi 700050, Romania d Academy of Romanian Scientists, Bucuresti 050094, Romania

Abstract

Rotational flow of an Oldroyd-B fluid induced by an infinite circular cylinder that applies a constant couple to the fluid is studied by means of integral transforms. Such a problem is not solved in the existing literature for rate type fluids and the present solutions are based on a simple but important remark regarding the governing equation for the non-trivial shear stress. The solutions that have been obtained satisfy all imposed initial and boundary conditions and can easy be reduced to the similar solutions corresponding to Maxwell, second-grade, and Newtonian fluids performing the same motion. Finally, the influence of material parameters on the velocity and shear stress distributions is graphically underlined.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics

Reference2 articles.

1. Math and Non - Newton Fluid Mech and Non - Newton Fluid Mech Rocky Mount Non - Newton Fluid Mech and and and and and;Corina Fetecau;Modell Math Appl Math Lett Int J Nonlin Mech Acta Int J Math Math Sci Int J Eng Sci Angew Math Phys Nonlin,2007

2. Sci Corina Fetecau and and Appl;Fetecau;Numer Simul Acta Mech,2006

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