Publication | Closed Access
Simultaneous PIV/OH-PLIF, Rayleigh thermometry/OH-PLIF and stereo PIV measurements in a low-swirl flame
105
Citations
27
References
2007
Year
AeroacousticsSimultaneous Piv/oh-plifEngineeringRayleigh Thermometry/oh-plifFluid MechanicsCombustion TheoryTurbulenceCombustion EngineeringPremixed Turbulent FlameLaminar FlameThermodynamicsStereo Piv MeasurementsFire SafetyRelative Oh DistributionSimultaneous TemperatureTurbulent FlameHeat TransferMultiphase FlowSimultaneous VelocityAerospace EngineeringCombustion ScienceAerodynamics
The diagnostic techniques for simultaneous velocity and relative OH distribution, simultaneous temperature and relative OH distribution, and three component velocity mapping are described. The data extracted from the measurements include statistical moments for inflow fluid dynamics, temperature, conditional velocities, and scalar flux. The work is a first step in the development of a detailed large eddy simulation (LES) validation database for a turbulent, premixed flame. The low-swirl burner used in this investigation has many of the necessary attributes for LES model validation, including a simplified interior geometry; it operates well into the thin reaction zone for turbulent premixed flames, and flame stabilization is based entirely on the flow field and not on hardware or pilot flames.
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