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foam-extend4.1-coherent-io/tutorials/viscoelastic/viscoelasticFluidFoam/DCPP
2010-10-12 12:42:12 +01:00
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0 Viscoelastic models and tutorials update. Jovani Favero and HJ 2010-10-12 12:42:12 +01:00
constant Viscoelastic models and tutorials update. Jovani Favero and HJ 2010-10-12 12:42:12 +01:00
system Viscoelastic models and tutorials update. Jovani Favero and HJ 2010-10-12 12:42:12 +01:00
Allclean Viscoelastic models and tutorials update. Jovani Favero and HJ 2010-10-12 12:42:12 +01:00
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README Viscoelastic models and tutorials update. Jovani Favero and HJ 2010-10-12 12:42:12 +01:00

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/*--------------------------------*- C++ -*----------------------------------*\
| =========                 |                                                 |
| \\      /  F ield         | OpenFOAM Extend Project: Open source CFD        |
|  \\    /   O peration     | Version:  1.6-ext                               |
|   \\  /    A nd           | Web:      www.extend-project.de                 |
|    \\/     M anipulation  |                                                 |
\*---------------------------------------------------------------------------*/
#
#+TITLE: *DCPP viscoelastic constitutive model README file for version 1.6-ext* 
#+AUTHOR: Jovani                
#+DATE:  05 October 2010



* This is a simulation case for a viscoelastic fluid described by the Double 
  Convected Pom-Pom constitutive model (DCPP).
  The geometry was the 4:1 plane contraction. This is a well studied 
  geometry in viscoelastic fluid flow research.

  More details about the model or parameters used, as also informations 
  about the geometry, can be found at:

*** CLEMEUR, N.; RUTGERS, R. P. G.; DEBBAUT, B. Numerical simulation of abrupt
    contraction flows using the double convected pom-pom model. Journal of Non-
    Newtonian Fluid Mechanics, v. 117, n. 2-3, p. 193  209, 2004. ISSN 0377-
    0257.  
    <http://www.sciencedirect.com/science/article/B6TGV-4C47GVS-3/2/d9d170224e2a3ee5f6560b5ec5875662>


* The results for this case using viscoelasticFluidFoam solver can be found at:

*** Journal of Non-Newtonian Fluid Mechanics:
    <http://www.sciencedirect.com/science/article/B6TGV-511BYYF-1/2/53b604790dda6f271bb2e82870ba0c2a>