Turbulent jet mixing enhancement and control using self-excited nozzles

被引:5
|
作者
Vandsburger, Uri [1 ]
Yuan, Yiqing
机构
[1] Virginia Polytech Inst & State Univ, Dept Mech Engn, Blacksburg, VA 24061 USA
[2] DaimlerChrysler Corp, Adv Vehicle Engn, Dept Powertrain Virtual Simulat, Auburn Hills, MI 48326 USA
关键词
AXISYMMETRICAL JET; INSTABILITIES; EXCITATION; EVOLUTION;
D O I
10.1115/1.2745840
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
A new self-excited jet methodology was developed for the mixing enhancement of jet fluid with its surrounding, quiescent, stagnant, or coflowing fluid. The nozzles, of a square or rectangular cross section, featured two flexible side walls that could go into aerodynamically-induced vibration. The mixing of nozzle fluid was measured using planar laser-induced fluorescence (PLIF) from acetone seeded into the nozzle fluid. Overall, the self-excited jet showed enhanced mixing with the ambient fluid, for example, at 390 Hz excitation a mixing rate enhancement of 400% at x/D=4 and 200% at x/D = 20 over the unexcited jet. The mixing rate was sensitive to the excitation frequency, increasing by 60% with the frequency changing from 200 to 390 Hz (corresponding to a Strouhal number from 0.052 to 0.1). It was also observed that the mixing rate increased with the coflow velocity To explain the observed mixing enhancement, the flow field was studied in detail using four-element hot wire probes. This led to the observation of two pairs of counter rotating large-scale streamwise vortices as the dominant structures in the excited flow. Shedding right from the nozzle exit, these inviscid vortices provided a rapid transport of the momentum and mass between the jet and the surrounding fluid at a length scale comparable to half-nozzle diameter. Moreover the excited jet gained as much as six times the turbulent kinetic energy at the nozzle exit over the unexcited jet. Most of the turbulent kinetic energy is concentrated within five diameters from the nozzle exit, distributed across the entire jet width, explaining the increased mixing in the near field.
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页码:842 / 851
页数:10
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