Title of article
A wave propagation algorithm for viscoelastic fluids with spatially and temporally varying properties Original Research Article
Author/Authors
Robert D. Guy، نويسنده , , Aaron L. Fogelson، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
15
From page
2250
To page
2264
Abstract
An algorithm is presented for simulating the fluid and stress equations that arise in a continuum model of platelet aggregation [A.L. Fogelson, R.D. Guy, Platelet–wall interactions in continuum models of platelet thrombosis: formulation and numerical solution, Math. Med. Biol. 21 (2004) 293–334]. The model is equivalent to models of viscoelastic fluids with spatially and temporally varying material parameters. A subsystem containing the elastic terms is handled using a wave propagation algorithm. Two different methods for propagating waves are compared in computational tests. One method linearizes the equations about cell edges, and the other is based on the propagation of waves in a heterogeneous elastic medium. When the viscoelastic fluid is in contact with a Newtonian fluid, the method based on linearization about the edges gives more accurate results. No high Weissenberg number instabilities were observed. As long as the time step is chosen to obey a CFL condition, the algorithm is stable and no unphysical oscillations appear in the solution.
Keywords
Finite volume method , Wave propagation , High Weissenberg number , Platelet aggregation , Oldroyd-B
Journal title
Computer Methods in Applied Mechanics and Engineering
Serial Year
2008
Journal title
Computer Methods in Applied Mechanics and Engineering
Record number
894251
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