Instantaneous fluid force acting on a circular cylinder control by a small rod

Author:

Tsutsui Takayuki

Abstract

Two unique bluff body flow control methods using a small rod have been proposed in previous studies. The first is the forced reattachment method, which is a type of separated shear layer control. This method reduces drag and generates a lift. The second is the front rod method, which involves the placement of a small rod upstream of the bluff body to control the incoming flow and reduce drag. This paper describes the features of the instantaneous fluid force achieved using these flow control methods. These methods were experimentally applied to a cylinder, and the instantaneous pressure field and the flow visualizations of these methods are presented. When the forced reattachment method was applied, a lift force was generated, and the vibration was less than that in the case of the front rod method. When the front rod method was applied, the drag force was reduced by over 50% in comparison with those in the uncontrolled case and the case with the forced reattachment method.

Publisher

EDP Sciences

Reference10 articles.

1. Tsutsui T., Igarashi T., Flow Control around a Circular cylinder by a Small Cylinder, Proc. of the 11th Australasian Fluid Mechanics Conference. Hobart, Australia. pp. 14-18, (1992)

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3. Interactive flow around two circular cylinders of different diameters at close proximity. Experiment and numerical analysis by vortex method

4. Tsutsui T., Igarashi T., Flow Control around a Circular cylinder by a Small Cylinder (Properties of Reattachment Jet). Proc. of the 3rd ASME-JSME Joint Fluids Eng. Conf., San Francisco, California, FEDSM99-6943, (1999)

5. Drag reduction of a circular cylinder in an air-stream

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