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Fluorescence quantification of 10 random fields was obtained using Volocity software (Improvision, Waltham, MA, USA).
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The velocity fields are obtained using a perturbation analysis.
The turbulence fields are obtained using the standard k ε model.
The velocity fields were obtained using the Particle Image Velocimetry (PIV) technique.
Two dimensional solution of velocity and temperature fields are obtained using the CFD code FLUENT.
The potentials and fields are obtained using Poisson's equation: ∇ · ε 0 ∇ Φ ( x, t ) = ρ ( x, t ) (1).
The potentials and fields are obtained using Poisson's equation: nabla ; cdot ;varepsilon_{0} nabla Phi ;(x, t); = ;rho ;(x, t).
Simultaneous temporally and spatially resolved, 2-D velocity fields are obtained using Particle Image Velocimetry (PIV) in a one-meter diameter methane fire.
In our experiments, all flow fields were obtained using particle image velocimetry (PIV) (Raffel et al., 2007).
First, fields were obtained using full threshold strategy rather than SITA, which resulted in prolonged testing times.
Variable field was obtained using plastic spacers.
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