An experimental study of a reactive plume in grid turbulence

被引:40
作者
Brown, RJ
Bilger, RW
机构
[1] Dept. of Mech. and Mechatronic Eng., University of Sydney
关键词
D O I
10.1017/S0022112096002054
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Experimental results for a reactive non-buoyant plume of nitric oxide (NO) in a turbulent grid flow doped with ozone (O-3) are presented. The Damkohler number (N-D) for the experiment is of order unity indicating the turbulence and chemistry have similar timescales and both affect the chemical reaction rate. Continuous measurements of two components of velocity using hot-wire anemometry and the two reactants using chemiluminescent analysers have been made. A spatial resolution for the reactants of four Kolmogorov scales has been possible because of the novel design of the experiment. Measurements at this resolution for a reactive plume are not found in the literature. The experiment has been conducted relatively close to the grid in the region where self-similarity of the plume has not yet developed. Statistics of a conserved scalar, deduced from both reactive and non-reactive scalars by conserved scalar theory, are used to establish the mixing held of the plume, which is found to be consistent with theoretical considerations and with those found by other investigators in non-reactive flows. Where appropriate the reactive species means and higher moments, probability density functions, joint statistics and spectra are compared with their respective frozen, equilibrium and reaction-dominated limits deduced from conserved scalar theory. The theoretical limits bracket reactive scalar statistics where this should be so according to conserved scalar theory. Both reactants approach their equilibrium limits with greater distance downstream. In the region of measurement, the plume reactant behaves as the reactant not in excess and the ambient reactant behaves as the reactant in excess. The reactant covariance lies outside its frozen and equilibrium limits for this value of N-D. The reaction rate closure of Toor (1969) is compared with the measured reaction rate. The gradient model is used to obtain turbulent diffusivities from turbulent fluxes. Diffusivity of a non-reactive scalar is found to be close to that measured in non-reactive hows by others.
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页码:373 / 407
页数:35
相关论文
共 64 条
[1]  
ANAND MS, 1985, TURBULENT SHEAR FLOW, V4, P46
[2]   HIDDEN PHOTOSTATIONARY EQUILIBRIUM - A CASE-STUDY ON THE EFFECT OF MONITOR AVERAGING ON THE CALCULATED OXIDATION RATE OF NO TO NO2 IN THE PLUME OF A POWER-PLANT [J].
BANGE, P .
ATMOSPHERIC ENVIRONMENT PART A-GENERAL TOPICS, 1993, 27 (04) :573-580
[3]  
Bendat J.S., 1971, RANDOM DATA ANAL MEA
[4]  
Bilger R. W., 1980, Turbulent reacting flows, P65
[5]   CONDITIONAL MOMENT CLOSURE FOR TURBULENT REACTING FLOW [J].
BILGER, RW .
PHYSICS OF FLUIDS A-FLUID DYNAMICS, 1993, 5 (02) :436-444
[6]   TURBULENT EFFECTS ON THE CHEMICAL-REACTION FOR A JET IN A NON-TURBULENT STREAM AND FOR A PLUME IN A GRID-GENERATED TURBULENCE - COMMENT [J].
BILGER, RW ;
MUDFORD, NR ;
ATKINSON, JD .
PHYSICS OF FLUIDS, 1985, 28 (10) :3175-3177
[7]   PERTURBATION ANALYSIS OF TURBULENT NON-PREMIXED COMBUSTION [J].
BILGER, RW .
COMBUSTION SCIENCE AND TECHNOLOGY, 1980, 22 (5-6) :251-261
[8]   REACTION IN A SCALAR MIXING LAYER [J].
BILGER, RW ;
SAETRAN, LR ;
KRISHNAMOORTHY, LV .
JOURNAL OF FLUID MECHANICS, 1991, 233 :211-242
[9]  
BILGER RW, 1985, PHYS FLUIDS, V27, P77
[10]  
BILGER RW, 1976, PROG ENERG COMBUST, V13, P101