This paper is concerned with the steady flow of a Maxwell fluid between two porous disks rotating with the same angular velocity about noncoincident axes normal to the disks. An exact solution to the problem depending on the Deborah number, the suction/injection velocity parameter, and the Reynolds number is obtained. It is shown that the core of fluid tends to rotate about the z-axis that characterizes the line in equal distance to the two axes of rotation when the Deborah and Reynolds numbers increase and a thinner boundary layer occurs in the region adjacent to the top disk when the axial velocity of fluid that is based on the suction/injection velocity parameter is upward. In addition, an approximate solution is presented for small Debo...
This paper discusses the development of boundary layers in the flow of a Newtonian fluid between two...
An attempt has been made to study the effect of rotation on incompressible, electrically non-conduct...
This paper studies the effects of a circular magnetic field on the flow of a conducting fluid about ...
The flow of a viscous, incompressible fluid between two parallel porous disks when the lower disk is...
This is a study of conducting flow in the gap between two parallel co-axial nonconducting disks of w...
This is a study of conducting flow in the gap between two parallel co-axial nonconducting disks of w...
In this paper we examine the flow of a conducting fluid between a solid rotating disk and a stationa...
The flow of an incompressible second-order fluid between two infinite porous rotating disks has been...
The magnetohydrodynamic (MHD) flow of an electrically conducting second order/grade fluid past a por...
The flow of a second grade fluid between two rotating porous discs is investigated. The equations of...
Abstract:- The problem of magnetohydrodynamics (MHD) flow of a conducting, incompressible fluid due ...
The governing equations for the unsteady flow of a uniformly conducting incompressible fourth-grade ...
The steady flow of an incompressible, viscous, electrically conducting fluid between two parallel, i...
This paper discusses the development of boundary layers in the flow of a Newtonian fluid between two...
An attempt has been made to study the effect of rotation on incompressible, electrically non-conduct...
This paper studies the effects of a circular magnetic field on the flow of a conducting fluid about ...
The flow of a viscous, incompressible fluid between two parallel porous disks when the lower disk is...
This is a study of conducting flow in the gap between two parallel co-axial nonconducting disks of w...
This is a study of conducting flow in the gap between two parallel co-axial nonconducting disks of w...
In this paper we examine the flow of a conducting fluid between a solid rotating disk and a stationa...
The flow of an incompressible second-order fluid between two infinite porous rotating disks has been...
The magnetohydrodynamic (MHD) flow of an electrically conducting second order/grade fluid past a por...
The flow of a second grade fluid between two rotating porous discs is investigated. The equations of...
Abstract:- The problem of magnetohydrodynamics (MHD) flow of a conducting, incompressible fluid due ...
The governing equations for the unsteady flow of a uniformly conducting incompressible fourth-grade ...
The steady flow of an incompressible, viscous, electrically conducting fluid between two parallel, i...
This paper discusses the development of boundary layers in the flow of a Newtonian fluid between two...
An attempt has been made to study the effect of rotation on incompressible, electrically non-conduct...
This paper studies the effects of a circular magnetic field on the flow of a conducting fluid about ...