LDA MEASUREMENTS IN THE NEAR-WALL REGION OF A TURBULENT PIPE-FLOW

被引:163
作者
DURST, F
JOVANOVIC, J
SENDER, J
机构
[1] Lehrstuhl für Strömungsmechanik, Universität Erlangen-Nürnberg, D-91058, Erlangen
关键词
D O I
10.1017/S0022112095001984
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
This paper presents laser-Doppler measurements of the mean velocity and statistical moments of turbulent velocity fluctuations in the near-wall region of a fully developed pipe flow at low Reynolds numbers. A refractive-index-matched fluid was used in a Duran-glass test section to permit access to the near-wall region without distortion of the laser beams. All measurements were corrected for the influence of the finite size of measuring control volume. Measurements of long-time statistical averages of all three fluctuating velocity components in the near-wall region are presented. It is shown that the turbulence intensities in the wall region do not scale with inner variables. However, the limiting behaviour of the intensity components very close to the wall show only small variations with the Reynolds number. Measurements of higher-order statistical moments, the skewness and flatness factors, of axial and tangential velocity components confirm the limiting behaviour of these quantities obtained from direct numerical simulations of turbulent channel flow. The comparison of measured data with those obtained from direct numerical simulations reveals that noticeable discrepancies exist between them only with regard to the flatness factor of the radial velocity component near the wall. The measured v' flatness factor does not show the steep rise close to the wall indicated by numerical simulations. Analysis of the measured data in the near-wall region reveals significant discrepancies between the present LDA measurements and experimental results obtained using the hot-wire anemometry.
引用
收藏
页码:305 / 335
页数:31
相关论文
共 22 条
[1]   THE FLUCTUATING WALL-SHEAR STRESS AND THE VELOCITY-FIELD IN THE VISCOUS SUBLAYER [J].
ALFREDSSON, PH ;
JOHANSSON, AV ;
HARITONIDIS, JH ;
ECKELMANN, H .
PHYSICS OF FLUIDS, 1988, 31 (05) :1026-1033
[2]  
[Anonymous], 1968, BOUNDARY LAYER THEOR
[3]   LOW-REYNOLDS-NUMBER EFFECTS IN A FULLY-DEVELOPED TURBULENT CHANNEL FLOW [J].
ANTONIA, RA ;
TEITEL, M ;
KIM, J ;
BROWNE, LWB .
JOURNAL OF FLUID MECHANICS, 1992, 236 :579-605
[4]   VISCOUS SUBLAYER AND ADJACENT WALL REGION IN TURBULENT PIPE FLOW [J].
BAKEWELL, HP ;
LUMLEY, JL .
PHYSICS OF FLUIDS, 1967, 10 (9P1) :1880-&
[5]   THE VELOCITY AND VORTICITY VECTOR-FIELDS OF A TURBULENT BOUNDARY-LAYER .2. STATISTICAL PROPERTIES [J].
BALINT, JL ;
WALLACE, JM ;
VUKOSLAVCEVIC, P .
JOURNAL OF FLUID MECHANICS, 1991, 228 :53-86
[6]  
DURST F, 1992, 6TH P INT S LDA LISB
[7]   STRUCTURE OF VISCOUS SUBLAYER AND ADJACENT WALL REGION IN A TURBULENT CHANNEL FLOW [J].
ECKELMANN, H .
JOURNAL OF FLUID MECHANICS, 1974, 65 (SEP16) :439-459
[8]  
Erm L, 1987, TURBULENT SHEAR FLOW, P186
[9]   MEASUREMENT OF FLUID VELOCITY GRADIENTS USING LASER-DOPPLER TECHNIQUES [J].
GOLDSTEI.RJ ;
ADRIAN, RJ .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1971, 42 (09) :1317-&
[10]   STATISTICAL-ANALYSIS OF THE DYNAMIC EQUATIONS FOR HIGHER-ORDER MOMENTS IN TURBULENT WALL BOUNDED FLOWS [J].
JOVANOVIC, J ;
DURST, F ;
JOHANSSON, TG .
PHYSICS OF FLUIDS A-FLUID DYNAMICS, 1993, 5 (11) :2886-2900