A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-Newtonian drops suspended in a Newtonian fluid is developed. The boundary integral formulation for Stokes flow is used and the non-Newtonian stress is treated as a source term which yields an extra integral over the domain of the drop. The implementation of the boundary conditions is facilitated by rewriting the domain integral by means of the Gauss divergence theorem. To apply the divergence theorem smoothness assumptions are made concerning the non-Newtonian stress tensor. The correctness of these assumptions in actual simulations is checked with a numerical validation procedure. The method appears mathematically correct and the numerical a...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
A boundary integral method for two-dimensional (non)-Newtonian drops in slow viscous flo
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
In this thesis we describe the development of a boundary integral method for the simulation of non-N...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
A boundary integral method for two-dimensional (non)-Newtonian drops in slow viscous flo
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of Newtonian or non-...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
A boundary integral method for the simulation of the time-dependent deformation of axisymmetric Newt...
In this thesis we describe the development of a boundary integral method for the simulation of non-N...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...
A boundary integral method for two-dimensional (non)-Newtonian drops in slow viscous flo
The boundary integral formulation of the solution to the Stokes equations is used to describe the de...