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Journal of Non-newtonian Fluid Mechanics | 1995

A boundary integral method for two-dimensional (non)-Newtonian drops in slow viscous flow

E.M. Toose; Bernardus J. Geurts; Johannes G.M. Kuerten

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 algorithm is second order accurate. Besides this validation we present simulation results for a Newtonian drop and a drop consisting of an Oldroyd-B fluid. The results for Newtonian and non-Newtonian drops in two dimensions indicate that the steady state deformation is quite independent of the drop-fluid. The deformation process, however, appears to be strongly dependent on the drop-fluid. For the non-Newtonian drop a mechanical model is developed to describe the time-dependent deformation of the cylinder for small capillary numbers.


Journal of Engineering Mathematics | 1996

Axisymmetric non-Newtonian drops treated with a boundary integral method

E.M. Toose; D. van den Ende; Bernardus J. Geurts; Johannes G.M. Kuerten; P.J. Zandbergen


Second Pacific Rim Conference on Rheology | 1997

Deformation of non-Newtonian drops and vesicles in an elongational flow

E.M. Toose; Henricus T.M. van den Ende; Bernardus J. Geurts; Johannes G.M. Kuerten


Archive | 1997

Natuurkunde van Complexe Vloeistoffen

W.G.M. Agterof; Michael H.G. Duits; H.T.M. (Dirk) van den Ende; L.V.A. Breedveld; A.I.M. Denneman; M.F. Fyrillas; B.J. de Gans; J.W. Jansen; R.J.J. Jongschaap; A.V. Korobko; H.A.H. Mousa; P.A. Nommensen; H.M. Schaink; M. Tentij; V.A. Tolpekin; E.M. Toose; R.H.W. Wientjes; Y.A. Zatovsky; J. Mellema


Memorandum / University of Twente, Faculty of Applied Mathematics, ISSN 0921-1969 | 1997

A boundary element method for compound non-Newtonian drops

E.M. Toose; Bernardus J. Geurts; Johannes G.M. Kuerten


FOM/SW bijeenkomst | 1997

Drops in flow

E.M. Toose; Henricus T.M. van den Ende; Bernardus J. Geurts; Johannes G.M. Kuerten; J. Mellema; P.J. Zandbergen


Burgersdag Stromingsleer en Technologie | 1997

Droplets in flow

E.M. Toose; Henricus T.M. van den Ende; Bernardus J. Geurts; Johannes G.M. Kuerten; J. Mellema; P.J. Zandbergen


Onbekend | 1996

Calculation of the deformation of vesicles in an axisymmetric elongational flow

E.M. Toose; D. van den Ende; Bernardus J. Geurts; Johannes G.M. Kuerten


Memorandum Faculty of Mathematical Sciences | 1994

A boundary integral method for two-dimensional non-Newtonian drops in slow viscous flow

E.M. Toose; Rudolf M.J. van Damme; Bernardus J. Geurts; Johannes G.M. Kuerten

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Johannes G.M. Kuerten

Eindhoven University of Technology

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