Published 2012 | Version v1
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Boundary layer flow of an oldroyd-b fluid in the region of stagnation point over a stretching sheet

Creators

  • 1. Pakistan Institute of Nuclear Science and Technology, Islamabad (Pakistan). Theoretical Plasma Physics Div.

Description

The mathematical modeling for the two-dimensional boundary layer flow of an Oldroyd-B fluid is presented. The developed equations are used to discuss the problem of two-dimensional flow in the region of a stagnation point over a stretching sheet. The obtained partial differential equations are reduced to an ordinary differential equation by a suitable transformation. The obtained equation is then solved using a finite difference method. The influence of the pertinent fluid parameters on the velocity is discussed through graphs. The behavior of f (0) is also investigated for the change in parameter values. Our main focus is to discuss the effects of relaxation and retardation time parameters on the velocity components in the x and y directions. In addition to it the skin friction coefficient is evaluated which is a measure of frictional drag at the surface illustrates that the boundary layer thickness decreases due to an increase in the relaxation time constant. The reason is that a higher relaxation time constant give rise to a slower recovery process and as a result the boundary layer thickness grows at a slower rate for a higher value of the relaxation time constant when compared with its lower value. (orig./A.B.)

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Part of:
Annual Report 2010-11

Additional details

Publishing Information

Imprint Title
Annual Report 2010-11
Imprint Pagination
123 p.
Journal Page Range
p. 14
Report number
INIS-PK--008

Optional Information