Radial Deformation Frequency Effect on the Three-Dimensional Flow in the Cylinder Wake

Author:

Aissa Mohamed1,Bouabdallah Ahcène2,Oualli Hamid3

Affiliation:

1. CDER/Unit of Applied Research in Renewable Energy (CDER/URAER), Ghardaia 47133, Algeria e-mail:

2. LTSE University of Sciences and Technology Houari Boumedienne (USTHB), Algiers 16111, Algeria e-mail:

3. Fluid Mechanic Laboratory, School Military Polytechnic (EMP), Bordj El-Bahri 16045, Algeria e-mail:

Abstract

In the current paper, the three-dimensional air flow evolution around a circular cylinder is studied. The main aim is to control the flow field upstream and downstream of a circular cylinder by means of radial deformation. Within a particular step, one focuses on the response of the topological structures, which is developing in the cylinder near wake to applied pulsatile motion. Furthermore, a special care is considered to the aerodynamics forces behavior in adjusting the applied controlling strategy. The used controlling frequency range extends from f = 1fn = 17 Hz to f = 6fn = 102.21 Hz, which corresponds to a series of multiharmonic frequency varying from one to six times the natural vortex shedding frequency (VSF) in none forced wake. Throughout this work, the forcing amplitude is fixed at 16% of cylinder diameter and the Reynolds number as Re = 550. Through Fluent computational fluid dynamics (CFD) code and Matlab simulations, the obtained results showed a good accordance with the calculated ones.

Publisher

ASME International

Subject

Mechanical Engineering

Reference65 articles.

1. Review of Flow Interference Between Two Circular Cylinders in Various Arrangements;ASME J. Fluids Eng.,1977

2. Vortex Dynamics in the Cylinder Wake;Ann. Rev. Fluid Mech,1996

3. Fluid Turbulence;Rev. Mod. Phys.,1999

4. Vortex-Induced Vibrations;Ann. Rev. Fluid Mech,2004

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