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Near-wake flow structure of elliptic cylinders close to a free surface: effect of cylinder aspect ratio SCIE SCOPUS

Title
Near-wake flow structure of elliptic cylinders close to a free surface: effect of cylinder aspect ratio
Authors
DaichinLee, SJ
Date Issued
2004-05
Publisher
SPRINGER-VERLAG
Abstract
The flow fields behind elliptic cylinders adjacent to a free surface were investigated experimentally in a circulating water channel. A range of cylinder aspect ratios (AR=2, 3, 4) were considered, while the cross-sectional area of the elliptical cylinder was kept constant. The main objective of this study was to investigate the effect of cylinder aspect ratio and a free surface on the flow structure in the near-wake behind elliptic cylinders. For each elliptic cylinder, the flow structure was analyzed for various values of the submergence depth of the cylinder beneath the free surface. The flow fields were measured using a single-frame double-exposure PIV (Particle Image Velocimetry) system. For each experimental condition, 350 instantaneous velocity fields were obtained and ensemble-averaged to obtain the mean velocity field and spatial distribution of the mean vorticity statistics. The results show that near-wake can be classified into three typical flow patterns: formation of a Coanda flow, generation of substantial jet-like flow, and attachment of this jet flow to the free surface. The general flow structure observed behind the elliptic cylinders resembles the structure previously reported for a circular cylinder submerged near a free surface. However, the wake width and the angle of downward deflection of the shear layer developed from the lower surface of the elliptic cylinder differ from those observed for a circular cylinder. These trends are enhanced as cylinder aspect ratio is increased. In addition, the free surface distortion is also discussed in the paper.
Keywords
elliptic cylinder; aspect ratio; free surface; near-wake; PIV; TURBULENT BOUNDARY-LAYER; CIRCULAR-CYLINDER; FORCES
URI
https://oasis.postech.ac.kr/handle/2014.oak/17964
DOI
10.1007/s00348-003-0755-1
ISSN
0723-4864
Article Type
Article
Citation
EXPERIMENTS IN FLUIDS, vol. 36, no. 5, page. 748 - 758, 2004-05
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이상준LEE, SANG JOON
Dept of Mechanical Enginrg
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