Sunday, 11 April 2010

Wseas Transactions

New Subscription to Wseas Transactions

The following information was submitted:

Transactions: WSEAS TRANSACTIONS ON MATHEMATICS
Transactions ID Number: 89-634
Full Name: Fadzilah Md ali
Position: Lecturer
Age: ON
Sex: Female
Address: Department of Mathematics, Faculty of Science, Universiti Putra Malaysia , 43400 UPM Serdang, Selangor, Malaysia
Country: MALAYSIA
Tel:
Tel prefix:
Fax:
E-mail address: fadzilah@math.upm.edu.my
Other E-mails: fadzilah@fsas.upm.edu.my
Title of the Paper: MHD viscous flow and heat transfer induced by a permeable shrinking sheet with prescribed surface heat flux
Authors as they appear in the Paper: Fadzilah Md ali, Roslinda Nazar, Norihan Md arifin
Email addresses of all the authors: fadzilah@math.upm.edu.my, rmn72my@yahoo.com, norihan@math.upm.edu.my
Number of paper pages: 11
Abstract: The problem of magnetohydrodynamic (MHD) boundary layer flow and heat transfer due to a permeable shrinking sheet with prescribed surface heat flux is studied. The viscous fluid is electrically conducting in the presence of a uniform applied magnetic field and the induced magnetic field is neglected. The transformed nonlinear ordinary differential equations are solved numerically via the implicit finite-difference scheme known as the Keller-box method. Both two-dimensional and axisymmetric cases are considered. The results for the skin friction coefficient and the wall temperature, as well as the velocity and temperature profiles are presented and discussed for various parameters. Dual solutions exist for certain range of the suction parameter and Hartmann number. It is found that the boundary layer separation is delayed with Hartmann number.
Keywords: Boundary layer, Heat transfer, Magnetohydrodynamic, Shrinking sheet, Suction, Surface heat flux.
EXTENSION of the file: .doc
Special (Invited) Session: MHD viscous flow and heat transfer due to a permeable shrinking sheet with prescribed surface heat flux
Organizer of the Session: 642-411
How Did you learn about congress:
IP ADDRESS: 119.40.118.197