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CO2 addition considerably decreased the flame speed.
The steady edge-flame speed is approximately twice the corresponding laminar flame speed.
Numerous correlations for the macroscopic turbulent flame speed to the local laminar flame speed exist.
Experiments showed that flame speed and flame inner cone height were mainly affected by gas components and lifted flame was influenced by flame speed and burner head temperature.
A correlation is proposed for the turbulent flame speed.
The pressure time development and flame speed were recorded.
We then allow the flame speed to depend on curvature.
The relative increase in the turbulent flame speed is lower.
Here the turbulent flame speed (local consumption speed) is doubled.
Theoretical expressions for flame speed are presented for both regimes.
To obtain the unstretched flame speed, independent of the experimental configuration, the measured flame speed needs to be corrected.
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