Dual-position excitation technique in flow control over an airfoil at low speeds

Author:

Ebrahimi Abbas,Hajipour Majid,Ghamkhar Kamran

Abstract

PurposeThe purpose of this paper is to control flow separation over a NACA 4415 airfoil by applying unsteady forces to the separated shear layers using dielectric barrier discharge (DBD) plasma actuators. This novel flow control method is studied under conditions which the airfoil angle of attack is 18°, and Reynolds number based on chord length is 5.5 × 105.Design/methodology/approachLarge eddy simulation of the turbulent flow is used to capture vortical structures through the airfoil wake. Power spectral density analysis of the baseline flow indicates dominant natural frequencies associated with “shear layer mode” and “wake mode.” The wake mode frequency is used simultaneously to excite separated shear layers at both the upper surface and the trailing edge of the airfoil (dual-position excitation), and it is also used singly to excite the upper surface shear layer (single-position excitation).FindingsBased on the results, actuations manipulate the shear layers instabilities and change the wake patterns considerably. It is revealed that in the single-position excitation case, the vortices shed from the upper surface shear layer are more coherent than the dual-position excitation case. The maximum value of lift coefficient and lift-to-drag ratio is achieved, respectively, by single-position excitation as well as dual-position excitation.Originality/valueThe paper contributes to the understanding and progress of DBD plasma actuators for flow control applications. Further, this research could be a beneficial solution for the promising design of advanced low speed flying vehicles.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference45 articles.

1. Role of actuation frequency in controlled flow reattachment over a stalled airfoil;AIAA Journal,2002

2. Control of boundary layer separation and the wake of an airfoil using ns-DBD plasma actuators,2016

3. Electrical and mechanical characteristics of surface AC dielectric barrier discharge plasma actuators applied to airflow control;Experiments in Fluids,2014

4. Vortex-structure interaction,1995

5. Effects of AC dielectric barrier discharge plasma actuator location on flow separation and airfoil performance;Procedia Engineering,2013

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