Stress behaviours of viscoelastic flow around square cylinder
Abstract
In this study, it is aimed the numerically investigation of the flow of liner PTT (Phan-Thien-Tanner) fluid, which is a viscoelastic fluid model over limited square obstacle by finite volume method. The finite volume method has been used for simultaneous solution of continuity, momentum and fluid model equations with appropriate boundary conditions. The effects of the inertia in terms of Reynolds number, Re, (0 < Re < 20) and the of elasticity in terms of Weissenberg number, We, (1 < We < 15) of PTT flow on vertical and shear stress areas are examined in detail.
Keywords
References
- 1. Liang, C.; Papadakis, G.; Luo, X. Comput. Fluids 2009, 38, 950-964.
- 2. Hassanzadeh, R.; Sahin, B.; Ozgoren, M. Int. J. Comput. Fluid D. 2011, 25, 535-545.
- 3. Breuer M.; Bernsdorf, M.; Zeiser, T.; Durst, T. Int. J. Heat Fluid Fl. 2000, 21, 186-196.
- 4. Sen, S.; Mittal, S.; Biswas, G. Int. J. Numer. Meth. Fl. 2011, 67, 1160-1174.
- 5. Puig-Aranega, A.; Burgos, J.; Cito, S.; Cuesta, I.; Saluena, C. Int. J. Comput. Fluid D. 2015, 29, 434-446.
- 6. Dhiman, A.K.; Chhabra, R.P.; Eswaran, V. J. Non-Newton. Fluid Mech. 2008, 148, 141-150.
- 7. Dhiman, A.K.; Chhabra, R.P.; Eswaran, V. J. Chem. Eng. Res. Des. 2006, 84, 300-310.
- 8. Ehsan, I.; Mohammad, S.; Reza, N.; Ali, J. Int. J. Phys. Sci. 2012, 7, 988-1000.
Details
Primary Language
English
Subjects
Chemical Engineering
Journal Section
Research Article
Publication Date
June 28, 2019
Submission Date
April 8, 2019
Acceptance Date
May 21, 2019
Published in Issue
Year 2019 Volume: 3 Number: 1
