Abstract

AbstractHeat transfer from premixed propane‐air flames to the cooled wall of a 5‐in. I.D. ramjet type of burner was studied with and without flame‐generated, sonic oscillations. Frequency and amplitude measurements revealed that both transverse and longitudinal waves were resonant. The heat flux to the wall was increased significantly by the oscillations, but the gas temperature profile was changed very little. The local heat transfer coefficient was found to be a linear function of the sound pressure amplitude and independent of the mode and frequency of the resonant oscillations.

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