Viscoelastic Mobility Problem Using A Boundary Element Method
Author(s)
Nhan, Phan-Thien; Fan, Xi-Jun
DownloadHPCES029.PDF (2.493Mb)
Metadata
Show full item recordAbstract
In this paper, the complete double layer boundary integral equation formulation for Stokes flows is extended to viscoelastic fluids to solve the mobility problem for a system of particles, where the non-linearity is handled by particular solutions of the Stokes inhomogeneous equation. Some techniques of the meshless method are employed and a point-wise solver is used to solve the viscoelastic constitutive equation. Hence volume meshing is avoided. The method is tested against the numerical solution for a sphere settling in the Odroyd-B fluid and some results on a prolate motion in shear flow of the Oldroyd-B fluid are reported and compared with some theoretical and experimental results.
Date issued
2002-01Series/Report no.
High Performance Computation for Engineered Systems (HPCES);
Keywords
double layer boundary integral equation, Stokes flows, viscoelastic fluids, viscoelastic mobility problem, viscoelastic constitutive equation, Stokes inhomogeneous equation