Effect of Free-stream Turbulence Properties on Boundary Layer Laminar-Turbulent Transition: A New Approach

被引:1
作者
Darag, Sakhr A. [1 ]
Horak, Vladimir [1 ]
机构
[1] Univ Def Brno, Brno 66210, Czech Republic
来源
9TH INTERNATIONAL CONFERENCE ON MATHEMATICAL PROBLEMS IN ENGINEERING, AEROSPACE AND SCIENCES (ICNPAA 2012) | 2012年 / 1493卷
关键词
Flat plate boundary layer; Transition onset; Turbulence intensity; Integral length scale; BYPASS TRANSITION; HEAT-TRANSFER; SIMULATIONS; SCALE; FLOW;
D O I
10.1063/1.4765502
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
The effect of length scale on flat-plate by-pass transitional boundary layers subject to free stream turbulence intensities ranging from 1.3 to 6.0 percent has been investigated. The analysis is based on the recent experimental and numerical observations into non-equilibrium flows that considering the effect of turbulence properties at the plate leading edge on the transition onset. According to this analysis, physical correlation is developed and incorporated in a conventional boundary layer computer scheme for prediction of transitional flows. The scheme was proposed to calculate the characteristics of the boundary layers under the effect of moderate free-stream turbulence levels by enhancing established integral techniques in conjunction with intermittency weighted model of the transitional boundary layer. To support the results validation, the experimental ERCOFTAC Test Cases T3A, T3B and T3AM for transitional integral parameters have been represented. The results show that the transition location for turbulence level higher than 4% is only a function of turbulence intensity (Tu) and unaffected by significant changes in the length scale (L-x). Whereas for low level of the incoming turbulent flows the transition onset is extremely dependent on FST characteristics, turbulence intensity and integral length scale.
引用
收藏
页码:282 / 289
页数:8
相关论文
共 50 条
[21]   Boundary-layer disturbances subjected to free-stream turbulence and simulation on bypass transition [J].
Qin, Hong ;
Dong, Ming .
APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2016, 37 (08) :967-986
[22]   Laminar-turbulent transition induced by a discrete roughness element in a supersonic boundary layer [J].
De Tullio, N. ;
Paredes, P. ;
Sandham, N. D. ;
Theofilis, V. .
JOURNAL OF FLUID MECHANICS, 2013, 735 :613-646
[23]   Leading-edge pressure gradient effect on boundary layer receptivity to free-stream turbulence [J].
Mamidala, Santhosh B. ;
Weingartner, A. ;
Fransson, J. H. M. .
JOURNAL OF FLUID MECHANICS, 2022, 935
[24]   Entropy Effect in Laminar-Turbulent Transition of the Supersonic Boundary Layer in the Wake of an Isolated Roughness [J].
Chuvakhov, P. V. .
FLUID DYNAMICS, 2020, 55 (01) :62-73
[25]   Modeling of Laminar-Turbulent Transition in Boundary Layers and Rough Turbine Blades [J].
Wei, Liang ;
Ge, Xuan ;
George, Jacob ;
Durbin, Paul .
JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2017, 139 (11)
[26]   FREE-STREAM TURBULENCE INDUCED BOUNDARY-LAYER TRANSITION IN LOW-PRESSURE TURBINES [J].
Durovic, Kristina ;
De Vincentiis, Luca ;
Simoni, Daniele ;
Lengani, Davide ;
Pralits, Jan ;
Henningson, Dan S. ;
Hanifi, Ardeshir .
PROCEEDINGS OF THE ASME TURBO EXPO 2020: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, VOL 2E, PT II, 2020,
[27]   Spatial characteristics of a zero-pressure-gradient turbulent boundary layer in the presence of free-stream turbulence [J].
Dogan, Eda ;
Hearst, R. Jason ;
Hanson, Ronald E. ;
Ganapathisubramani, Bharathram .
PHYSICAL REVIEW FLUIDS, 2019, 4 (08)
[28]   FREE-STREAM TURBULENCE INDUCED BOUNDARY-LAYER TRANSITION IN LOW-PRESSURE TURBINES [J].
De Vincentiis, Luca ;
Durovic, Kristina ;
Lengani, Davide ;
Simoni, Daniele ;
Pralits, Jan ;
Henningson, Dan S. ;
Hanifi, Ardeshir .
PROCEEDINGS OF ASME TURBO EXPO 2022: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2022, VOL 10D, 2022,
[29]   Simulations of heat transfer in a boundary layer subject to free-stream turbulence [J].
Li, Qiang ;
Schlatter, Philipp ;
Henningson, Dan S. .
JOURNAL OF TURBULENCE, 2010, 11 (45) :1-33
[30]   Experimental study on combustion within a supersonic boundary layer and its effect on laminar-turbulent transition [J].
Lysenko, V. I. ;
Starov, A. V. .
THERMOPHYSICS AND AEROMECHANICS, 2023, 30 (02) :263-269