EXPERIMENTAL INVESTIGATION OF THE FIELD OF VELOCITY-GRADIENTS IN TURBULENT FLOWS

被引:272
作者
TSINOBER, A [1 ]
KIT, E [1 ]
DRACOS, T [1 ]
机构
[1] SWISS FED INST TECHNOL,INST HYDROMECH & WASSERWIRTSCH,CH-8093 ZURICH,SWITZERLAND
关键词
D O I
10.1017/S0022112092002325
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
We present results of experiments on a turbulent grid flow and a few results on measurements in the outer region of a boundary layer over a smooth plate. The air flow measurements included three velocity components and their nine gradients. This was done by a twelve-wire hot-wire probe (3 arrays x 4 wires), produced for this purpose using specially made equipment (micromanipulators and some other auxiliary special equipment), calibration unit and calibration procedure. The probe had no common prongs and the calibration procedure was based on constructing a calibration function for each combination of three wires in each array (total 12) as a three-dimensional Chebishev polynomial of fourth order. A variety of checks were made in order to estimate the reliability of the results. Among the results the most prominent are the experimental confirmation of the strong tendency for alignment between vorticity and the intermediate eigenvector of the rate-of-strain tensor, the positiveness of the total enstrophy-generating term omega(i)omega(j)s(ij) (s(ij) = 1/2(partial derivative u(i)/partial derivative x(j) + partial derivative u(j)/partial derivative x(i)), omega(i) = epsilon(ijk) partial derivative u(j)/partial derivative x(k)) even for rather short records and the tendency for alignment in the strict sense between vorticity and the vortex stretching vector W(i) = omega(j)s(ij). An emphasis is put on the necessity to measure invariant quantities, i.e. independent of the choice of the system of reference (e.g. s(ij)s(ij) and omega(i)omega(j)s(ij)) as the most appropriate to describe physical processes. From the methodological point of view the main result is that the multi-hot-wire technique can be successfully used for measurements of all the nine velocity derivatives in turbulent flows, at least at moderate Reynolds numbers.
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页码:169 / 192
页数:24
相关论文
共 48 条
[1]   DISSIPATION AND VORTICITY SPECTRA IN A TURBULENT WAKE [J].
ANTONIA, RA ;
SHAH, DA ;
BROWNE, LWB .
PHYSICS OF FLUIDS, 1988, 31 (06) :1805-1807
[2]   REPORT ON THE IUTAM SYMPOSIUM - FUNDAMENTAL-ASPECTS OF VORTEX MOTION [J].
AREF, H ;
KAMBE, T .
JOURNAL OF FLUID MECHANICS, 1988, 190 :571-595
[3]   APPLICABILITY OF THE ISOTROPIC VORTICITY THEORY TO AN ADVERSE PRESSURE-GRADIENT FLOW [J].
ARORA, SC ;
AZAD, RS .
JOURNAL OF FLUID MECHANICS, 1980, 97 (MAR) :385-404
[4]   ALIGNMENT OF VORTICITY AND SCALAR GRADIENT WITH STRAIN RATE IN SIMULATED NAVIER-STOKES TURBULENCE [J].
ASHURST, WT ;
KERSTEIN, AR ;
KERR, RM ;
GIBSON, CH .
PHYSICS OF FLUIDS, 1987, 30 (08) :2343-2353
[5]  
Balint J.-L., 1987, Advances in Turbulence. Proceedings of the First European Turbulence Conference, P456
[6]   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
[7]  
BALINT JL, 1988, 1988 P ZAR MEM I SEM
[8]  
BALINT JL, 1986, THESIS U CLAUDE BERN
[9]   AN INEQUALITY CONCERNING THE PRODUCTION OF VORTICITY IN ISOTROPIC TURBULENCE [J].
BETCHOV, R .
JOURNAL OF FLUID MECHANICS, 1956, 1 (05) :497-504
[10]   SCALING OF THE BURSTING FREQUENCY IN TURBULENT BOUNDARY-LAYERS [J].
BLACKWELDER, RF ;
HARITONIDIS, JH .
JOURNAL OF FLUID MECHANICS, 1983, 132 (JUL) :87-103