An analytical method to find the flow generated by the basic singularities of Stokes flow in a wedge of arbitrary angle is presented. Specifically, we solve a biharmonic equation for the streamfunction of the flow generated by a point stresslet singularity and satisfying no-slip boundary conditions on the two walls of the wedge. The method, which is readily adapted to any other singularity type, takes full account of any transcendental singularities arising at the corner of the wedge. The approach is also applicable to problems of plane strain/stress of an elastic solid where the biharmonic equation also governs the Airy stress function
The present study furthcr explores the fundamental singular solutions for Stokes flow that can be us...
AbstractWe study the behavior of solutions to the stationary Stokes equations near singular points. ...
We consider steady, two-dimensional viscous flow of two fluids near a corner. The two fluids meet at...
Abrupt changes in boundary conditions in viscous flow problems give rise to stress singularities. Or...
Abrupt changes in boundary conditions in viscous flow problems give rise to stress singularities. Or...
New analytical representations of the Stokes flows due to periodic arrays of point singularities in ...
This paper develops the bitensorial formulation of the system of singularities associated with unbou...
AbstractThe governing equations for Stokes flow are formulated in terms of a stream function and Air...
In this paper, we study two-dimensional Stokes flow between sinusoidal walls. A stream function is i...
In this thesis we consider the incompressible and stationary Stokes problem with Navier-slip boundar...
Singular solutions of the Stokes equations play important roles in a variety of fluid dynamics probl...
summary:We present analytical solution of the Stokes problem in 2D domains. This is then used to fin...
In this paper, a solution of Two-Dimensional (2D) Stokes flow problem, subject to Dirichlet and flui...
The low-Reynolds-number, Stokes-flow equations are solved in a wedge-shaped region bounded by a movi...
The problem of determining the axisymmetric Stokes flow past an arbitrary body, the boundary shape o...
The present study furthcr explores the fundamental singular solutions for Stokes flow that can be us...
AbstractWe study the behavior of solutions to the stationary Stokes equations near singular points. ...
We consider steady, two-dimensional viscous flow of two fluids near a corner. The two fluids meet at...
Abrupt changes in boundary conditions in viscous flow problems give rise to stress singularities. Or...
Abrupt changes in boundary conditions in viscous flow problems give rise to stress singularities. Or...
New analytical representations of the Stokes flows due to periodic arrays of point singularities in ...
This paper develops the bitensorial formulation of the system of singularities associated with unbou...
AbstractThe governing equations for Stokes flow are formulated in terms of a stream function and Air...
In this paper, we study two-dimensional Stokes flow between sinusoidal walls. A stream function is i...
In this thesis we consider the incompressible and stationary Stokes problem with Navier-slip boundar...
Singular solutions of the Stokes equations play important roles in a variety of fluid dynamics probl...
summary:We present analytical solution of the Stokes problem in 2D domains. This is then used to fin...
In this paper, a solution of Two-Dimensional (2D) Stokes flow problem, subject to Dirichlet and flui...
The low-Reynolds-number, Stokes-flow equations are solved in a wedge-shaped region bounded by a movi...
The problem of determining the axisymmetric Stokes flow past an arbitrary body, the boundary shape o...
The present study furthcr explores the fundamental singular solutions for Stokes flow that can be us...
AbstractWe study the behavior of solutions to the stationary Stokes equations near singular points. ...
We consider steady, two-dimensional viscous flow of two fluids near a corner. The two fluids meet at...