Title of article :
Effect of Non-uniform Magnetic Field on Non-newtonian Fluid Separation in a Diffuser
Author/Authors :
Moghimi, S.M Department of Mechanical Engineering - Sari Branch Islamic Azad University, Sari, Iran , Abbasi, M Department of Mechanical Engineering - Sari Branch Islamic Azad University, Sari, Iran , Khaki Jamei, M Department of Mechanical Engineering - Sari Branch Islamic Azad University, Sari, Iran , Ganji, D.D Department of Mechanical Engineering - Sari Branch Islamic Azad University, Sari, Iran
Abstract :
The purpose of the present study is to investigate the boundary layer separation point in a
magnetohydrodynamics diffuser. As an innovation, the Re value on the separation point is
determined for the non-Newtonian fluid flow under the influence of the non-uniform magnetic field
due to an electrical solenoid, in an empirical case. The governing equations including continuity and
momentum are solved by applying the semi-analytical collocation method (C.M.). The analysis
revealed that for specific values of De from 0.4 to 1.6, α from 20o to 2.5o and Ha from zero to 8, the
Re value on the separation point is increased from 52.94 to 1862.78; thus, the boundary layer
separation postponed. Furthermore, the impact of the magnetic field intensity on the separation point
is analyzed from the physical point of view. It is observed the wall shear stress increases by
increasing magnetic field intensity that leads to delaying the boundary layer separation.
Keywords :
Diffuser , Non-uniform Magnetic Field , Separation Point , Second Grade
Journal title :
International Journal of Engineering