Bulletin of the American Physical Society
71st Annual Meeting of the APS Division of Fluid Dynamics
Volume 63, Number 13
Sunday–Tuesday, November 18–20, 2018; Atlanta, Georgia
Session A02: Turbulent Combustion I: Reacting Turbulence
8:00 AM–9:57 AM,
Sunday, November 18, 2018
Georgia World Congress Center
Room: B203
Chair: Jacqueline Chen, Sandia National Lab
Abstract ID: BAPS.2018.DFD.A02.5
Abstract: A02.00005 : Lagrangian Analysis of Turbulent Flame Structure in High-Speed Combustor
8:52 AM–9:05 AM
Presenter:
Cal Rising
(University of Central Florida)
Authors:
Cal Rising
(University of Central Florida)
Marissa Geikie
(University of Central Florida)
Kareem Ahmed
(University of Central Florida)
The current study investigates the structural evolution of a turbulent flame and the effects induced by the flame-vortex dynamics. A bluff-body stabilized, premixed flame in a high-speed combustor is used to analyze the turbulent flame. Simultaneous high-speed CH* chemiluminescence and particle image velocimetry (PIV) are implemented to characterize the flame-flow fields and flame structure. The flame temporal evolution and structural dynamics are ascertained using a Lagrangian tracking and decomposition method. The flame initial position is determined from the CH* data and is convected spatio-temporally with the Lagrangian equations of motion with the PIV velocity data. The flame-vortex dynamics are investigated by decomposing the vorticity transport equation, and considering the individual vorticity mechanisms: vortex stretching, viscous diffusion, baroclinic torque, and dilatation. In doing so, the vorticity mechanisms are tailored to convect the flame spatio-temporally; the Lagrangian tracking results are compared with the CH* data. Comparison of the experimental data with the numerical tracking results allows the influence of each vorticity mechanism on the flame structural dynamics to be categorically determined.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DFD.A02.5
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