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沟槽面湍流边界层减阻的TRPIV测量
TRPIV MEASUREMENT OF DRAG-REDUCTION IN THE TURBULENT BOUNDARY LAYER OVER RIBLETS PLATE

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李山 1   杨绍琼 1   姜楠 2  
文摘 采用高时间分辨率粒子图像测速技术对沟槽壁面平板湍流边界层速度矢量场的时间序列及其统计量进行了实验测量,讨论了在同一来流速度下沟槽壁面对平均速度剖面﹑雷诺切应力及湍流强度的影响.用流向速度分量的多尺度空间局部平均结构函数辨识壁湍流多尺度相干结构,用条件采样和相位平均技术提取壁湍流多尺度相干结构喷射和扫掠事件的脉动速度、展向涡量的二维空间拓扑形态.结果表明,与同材料光滑壁面对比,沟槽壁面实现了10.73%的摩阻减小量;沟槽壁面湍流边界层湍流强度及雷诺切应力皆比光滑平板湍流边界层对应统计量小,说明沟槽壁面有效降低了湍流边界层内流体的脉动.通过比较壁湍流相干结构猝发事件各脉动速度分量与展向涡量的空间分布特征,肯定了沟槽壁面的减阻效果,发现沟槽壁面通过抑制相干结构猝发事件实现减阻.
其他语种文摘 Time series of velocity vector field and statistics in the turbulent boundary layer(TBL) over the riblets surface and smooth one were measured utilizing the time-resolved particle image velocimetry (TRPIV) ; Several characteristic parameters in the TBL, such as the mean velocity profile, the Reynolds shear stress and the turbulent intensity, etc. were compared at the same free-stream velocity(0.19m/s) for the different surface plates. We firstly detected the coherent structures using multi-scale spatial locally-averaged structure function of the streamwise velocity component at different scales. Then, we utilized the conditional sampling and phase-average method to extract the spatial topologies of physical quantities, such as the velocity fluctuation and the spanwise vorticity, etc. based on the ejection or sweep events of coherent structures in the TBL. Results reveal that a drag-reduction of nearly 10.73 percent was acquired over the riblets surface when we compared the skin friction coefficient of such two Acrylic Plexiglas plates at the same free-stream velocity. In addition, that the streamwise turbulent intensity and the Reynolds shear stress of the TBL over riblets surface are both smaller than the ones over smooth surface at the same wall-normal position indicates riblets surface weaken the flow turbulence reducing the momentum exchange and energy loss in the flow. Lastly, we compared several statistic characteristics, mentioned above, based on the ejection and sweep events of coherent structures to clarify the effect of the drag-reduction over the riblets surface with triangle cross-section. More importantly, we find that the drag-reduction achieved by means of riblets surface suppressing the bursting events of coherent structures.
来源 力学学报 ,2013,45(2):183-192 【核心库】
DOI 10.6052/0459-1879-12-262
关键词 湍流边界层 ; 沟槽壁面 ; 减阻 ; 相干结构 ; 多尺度空间局部平均结构函数 ; 高时间分辨率粒子图像测速
地址

1. 天津大学力学系, 天津, 300072  

2. 天津大学力学系, 天津市现代工程力学重点实验室;;非线性力学国家重点实验室, 天津, 300072

语种 中文
文献类型 研究性论文
ISSN 0459-1879
学科 力学
基金 中国科学院力学研究所非线性力学国家重点实验室开放基金资助项目 ;  国家973计划 ;  国家自然科学基金
文献收藏号 CSCD:4798142

参考文献 共 25 共2页

1.  Walsh M J. Riblets as a viscous drag reduction technique. AIAA. Journal,1983,21(4):485-486 被引 104    
2.  Walsh M J. Turbulent boundary layer drag reduction using riblets. AIAA-82-0169,1982 被引 3    
3.  Walsh M J. Optimization and application of riblets for turbulent drag reduction. AIAA-84-0347,1984 被引 3    
4.  Brian D. 湍流流动中鲨鱼皮表面流体减阻研究进展. 力学进展,2012,42(6):821-836 被引 2    
5.  Bacher E V. A combined visualization anemometry study of the turbulent drag reducing mechanisms of triangular micro-groove surface modification. AIAA 85-0548:1985 被引 1    
6.  Gallagher J A. Turbulent boundary layer characteristics over streamwise grooves. AIAA 84-2185:1984 被引 1    
7.  Park S R. Flow alteration and drag reduction by riblets in a turbulent boundary layer. AIAA Journal,1994,32(1):31-38 被引 21    
8.  Bechert D W. Experiments on drag-reducing surfaces and their optimization with an adjustable geometry. Journal of Fluid Mechanics,1997,338:59-87 被引 95    
9.  胡海豹. 回转体表面条纹沟槽减阻水洞实验研究. 力学季刊,2006,27(2):267-272 被引 13    
10.  王晋军. 沟槽面湍流边界层减阻特性研究. 中国造船,2001,42(4):1-5 被引 26    
11.  李新华. 平板及减阻沟槽表面雷诺切应力的实验研究. 实验流体力学,2006,20(1):40-44 被引 5    
12.  宫武旗. 沟槽壁面减阻机理实验研究. 工程热物理学报,2002,23(5):579-582 被引 14    
13.  李育斌. 运七飞机外表面沟纹膜减阻的实验研究. 气动实验与测量控制,1995,9(3):21-26 被引 12    
14.  潘家正. 湍流减阻新概念的实验检索. 空气动力学学报,1996,14(3):305-310 被引 5    
15.  王晋军. 沟槽面湍流减阻研究综述. 北京航空航天大学学报,1998,24(1):31-34 被引 32    
16.  Nitschke P. Experimental investigation of turbulent flow in smooth and longitudinal grooved tubes,1984:77480 被引 1    
17.  Tang Y P. On near-wall turbulence-generating events in a turbulent boundary layer on a riblet surface. Applied Scientific Re-search,1993,50:215-232 被引 1    
18.  Wang J J. Experimental study on the turbulent boundary layer flow over riblets surface. Fluid Dynamics Research,2000,27:217-229 被引 17    
19.  Choi K S. Near-wall structure of a turbulent boundary layer with ri-blets. Journal of Fluid Mechanics,1989,208:417-458 被引 49    
20.  Hooshmand D. An experimental study of changes in the structure of a turbulent boundary layer due to surface geometry changes. AIAA 83-0230:1983 被引 1    
引证文献 9

1 杨绍琼 纵向沟槽壁面湍流边界层内类开尔文--亥姆霍兹涡结构的流动显示 力学学报,2015,47(3):529-533
被引 4

2 刘璐璐 平板湍流边界层流向—法向平面发卡涡的PIV实验研究 船舶力学,2016,20(1/2):23-30
被引 2

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