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적합직교분해(POD)기법을 사용한 난류 응집구조 거동에 관한 연구A Study on the Effect of Large Coherent Structures to the Skin Friction by POD Analysis

Other Titles
A Study on the Effect of Large Coherent Structures to the Skin Friction by POD Analysis
Authors
신성윤정광효강용덕서성부김진안남현
Issue Date
2017
Publisher
대한조선학회
Keywords
Turbulent boundary layer; Large coherent structure; Friction velocity; Wall shear stress; Top-down energy cascade; Particle Image Velocimetry; PIV; Variable Interval Time Averaging; VITA; Proper Orthogonal Decomposition; POD; 난류 경계층; 난류 응집구조; PIV; 입자영상 유속계; VITA; 변동시간간격평균; POD; 적합직교분해
Citation
대한조선학회 논문집, v.54, no.5, pp 406 - 414
Pages
9
Journal Title
대한조선학회 논문집
Volume
54
Number
5
Start Page
406
End Page
414
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/7807
DOI
10.3744/SNAK.2017.54.5.406
ISSN
1225-1143
Abstract
An experimental study in a recirculating water channel was carried out to investigate the effect of large coherent structures to the skin friction on a flat plate. Particle Image Velocimetry (PIV) technique was used to quantify characteristic features of coherent structures growing to the boundary layer. In the PIV measurement, it is difficult to calculate the friction velocity near the wall region due to laser deflection and uncertainty so that Clauser fitting method at the logarithmic region was adopted to compute the friction velocity and compared with the one directly measured by the dynamometer. With changing the free-stream velocity from 0.5 m/s to 1.0 m/s, the activity of coherent structures in the logarithmic region was increased over three times in terms of Reynolds stress. The flow field was separated by Variable Interval Time Averaging (VITA) technique into the weak and the strong structure case depending on the existence large coherent structures in order to validate its effectiveness. The stream-wise velocity fluctuation was scanned through at the boundary thickness whether it had a large deviation from background flow. With coherent structures connected from near-wall to the boundary layer, mean wall shear stress was higher than that of weak structure case. Proper Orthogonal Decomposition (POD) analysis was also applied to compare the energy budget between them at each free-stream velocity.
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