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Simulation of Viscoelastic Fluid Flows in Expansion Geometry Using Finite Volume Approach
作者姓名:Morteza Azizi  Ahmad Ramazani S.A.  Habib Etemadi M. and Ehsan Shirzaei S.
摘    要:The simulation results on viscoelastic fluid flows in sudden expansion geometry with different expansion ratios are presented. Oldroyd-B, linear Phan-Thien-Tanner (L-PTT) and Finitely Extensible Nonlinear Elastic (FENE-P) based constitutive equations were applied in two-dimensional Cartesian coordinates. The governing equations in transient and fully developed regions were solved using open source software called OpenFOAM. The flow patterns, including velocity profiles, shear stresses and first normal stress differences in some horizontal and vertical sections are illustrated. In addition, effects of the fluid type, flow dynamics and expansion ratio on the flow and vortex patterns in transient and fully developed regions are presented and discussed. The presented results show that existences of vortices cause the inverse velocity and negative stresses in expansion regions of the channel which increase with increment of expansion ratio and Weissenberg number (We). Furthermore, some dead spaces can be observed at channel expansion regions close to the wall which are also increased. The results also show that at low We numbers all fluids show close behavior while at high We numbers the FENE-P fluid behavior shows high divergence from that of the two other fluids.

关 键 词:流体流动  几何形状  膨胀比  粘弹性  有限体积法  第一法向应力差  非线性弹性  模拟

Simulation of viscoelastic fluid flows in expansion geometry using finite volume approach
Morteza Azizi,Ahmad Ramazani S.A.,Habib Etemadi M. and Ehsan Shirzaei S..Simulation of viscoelastic fluid flows in expansion geometry using finite volume approach[J].Chinese Journal of Polymer Science,2013,31(12):1599-1612.
Authors:Morteza Azizi  S A Ahmad Ramazani  M Habib Etemadi  S Ehsan Shirzaei
Institution:1. Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, Iran
Abstract:The simulation results on viscoelastic fluid flows in sudden expansion geometry with different expansion ratios are presented. Oldroyd-B, linear Phan-Thien-Tanner (L-PTT) and Finitely Extensible Nonlinear Elastic (FENE-P) based constitutive equations were applied in two-dimensional Cartesian coordinates. The governing equations in transient and fully developed regions were solved using open source software called OpenFOAM. The flow patterns, including velocity profiles, shear stresses and first normal stress differences in some horizontal and vertical sections are illustrated. In addition, effects of the fluid type, flow dynamics and expansion ratio on the flow and vortex patterns in transient and fully developed regions are presented and discussed. The presented results show that existences of vortices cause the inverse velocity and negative stresses in expansion regions of the channel which increase with increment of expansion ratio and Weissenberg number (We). Furthermore, some dead spaces can be observed at channel expansion regions close to the wall which are also increased. The results also show that at low We numbers all fluids show close behavior while at high We numbers the FENE-P fluid behavior shows high divergence from that of the two other fluids.
Keywords:Expansion flow  Simulation  Finite Volume  OpenFOAM  Viscoelastic Fluids  
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