2012Siberian Journal of PhysicsRequires access

Flow Feature Near Unswept and Swept Finit Span Wing with Smooth and Wavy Surface at Stall Angle of Attack

И. Д. Зверков, В. В. Козлов, Alexey Kryukov

Open publisher page 1 citations

Abstract

Incompressible flow feature at near stall angle off attack on classical and wavy surface wing with aspect ratio λ = 3,7 at Reynolds number 1,5 · 105 was investigated. Such kinds of the wings at the same Reynolds number are employing on micro air vehicle. Vitality of the small aircraft at near ground atmospheric condition flight depends from predictable wing behavior at near stall angle of attack. Separation and attached flow structure at lee surface of wavy and classical wing was shown by oil-film visualization at sweep and no sweep angle condition. It was shown the wavy wing at no sweep condition has the stall angle of attack lager than classical one. At post-stall angle of attack α = 9º for classical wing sweep angle increasing from 15º to 45º results to changing from separation flow regime to attached one. On wavy wing at the same angle of attack and sweep angle from 0º to 45º the attached flow is observed only. In practice, this means that micro air vehicle will easy controlling by automatic system and will fall in stall regime rarely

About this research paper

What this paper is about

Incompressible flow feature at near stall angle off attack on classical and wavy surface wing with aspect ratio λ = 3,7 at Reynolds number 1,5 · 105 was investigated. Such kinds of the wings at the same Reynolds number are employing on micro air vehicle. Vitality of the small aircraft at near ground atmospheric condition flight depends from predictable wing behavior at near stall angle of attack. Separation and attached flow structure at lee surface of wavy and classical wing was shown by oil-film visualization at sweep and no sweep angle condition. It was shown the wavy wing at no sweep condition has the stall angle of attack lager than classical one. At post-stall angle of attack α = 9º for classical wing sweep angle increasing from 15º to 45º results to changing from separation flow regime to attached one. On wavy wing at the same angle of attack and sweep angle from 0º to 45º the attached flow is observed only. In practice, this means that micro air vehicle will easy controlling by automatic system and will fall in stall regime rarely

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Incompressible flow feature at near stall angle off attack on classical and wavy surface wing with aspect ratio λ = 3,7 at Reynolds number 1,5 · 105 was investigated. Such kinds of the wings at the same Reynolds number are employing on micro air vehicle. Vitality of the small aircraft at near ground atmospheric condition flight depends from predictable wing behavior at near stall angle of attack. Separation and attached flow structure at lee surface of wavy and classical wing was shown by oil-film visualization at sweep and no sweep angle condition. It was shown the wavy wing at no sweep condition has the stall angle of attack lager than classical one. At post-stall angle of attack α = 9º for classical wing sweep angle increasing from 15º to 45º results to changing from separation flow regime to attached one. On wavy wing at the same angle of attack and sweep angle from 0º to 45º the attached flow is observed only. In practice, this means that micro air vehicle will easy controlling by automatic system and will fall in stall regime rarely

Key concepts: Stall (fluid mechanics), Angle of attack, Wing, Swept wing, Mechanics, Reynolds number, Physics, Aerospace engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Flow Feature Near Unswept and Swept Finit Span Wing with Smooth and Wavy Surface at Stall Angle of Attack — Research Paper | ScholarLens