2016Unpublished venueRequires access

Aerodynamic forces acting on a circular cylinder with splitter plate at incidence

Mustafa Sarıoğlu, Mehmet Seyhan, Yahya Erkan Akansu

Open publisher page 1 citations

Abstract

Aerodynamic forces acting on a circular cylinder with splitter plate is experimentally investigated at the range of attack angle between 0 ° and 180 ° with an increment of 3 ° for Re = 20000. In order to show the relation between Strouhal number, lift and drag coefficient and Reynolds number, force measurements are also carried out for the range of Re between 9700 and 36500 at the attack angles of 0 °, 45°, 90°, 135° . Lift and drag coefficient is largely independent of Reynolds number changing between 9700 and 36500 for these angles. The results showed that Strouhal number, drag coefficient and lift coefficient is widely independent of Reynolds number.

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What this paper is about

Aerodynamic forces acting on a circular cylinder with splitter plate is experimentally investigated at the range of attack angle between 0 ° and 180 ° with an increment of 3 ° for Re = 20000. In order to show the relation between Strouhal number, lift and drag coefficient and Reynolds number, force measurements are also carried out for the range of Re between 9700 and 36500 at the attack angles of 0 °, 45°, 90°, 135° . Lift and drag coefficient is largely independent of Reynolds number changing between 9700 and 36500 for these angles. The results showed that Strouhal number, drag coefficient and lift coefficient is widely independent of Reynolds number.

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Available abstract

Aerodynamic forces acting on a circular cylinder with splitter plate is experimentally investigated at the range of attack angle between 0 ° and 180 ° with an increment of 3 ° for Re = 20000. In order to show the relation between Strouhal number, lift and drag coefficient and Reynolds number, force measurements are also carried out for the range of Re between 9700 and 36500 at the attack angles of 0 °, 45°, 90°, 135° . Lift and drag coefficient is largely independent of Reynolds number changing between 9700 and 36500 for these angles. The results showed that Strouhal number, drag coefficient and lift coefficient is widely independent of Reynolds number.

Key concepts: Strouhal number, Reynolds number, Drag coefficient, Lift coefficient, Lift (data mining), Zero-lift drag coefficient, Drag, Splitter plate

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