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TEMPERATURE DISTRIBUTION IN A LAMINAR FLAME MEASURED BY LASER-INDUCED HYDROXYL RADICAL FLUORESCENCE

  • R. V. Tolstoguzov,
  • A. G. Savitskii,
  • V. M. Dulin

摘要

Abstract

This paper presents experimental measurements of flame temperature in the presence of an impact surface and a liquid phase added to the flow. The temperature is measured using laser-induced fluorescence. In the case of a flame of a pre-mixed methane-air mixture with a stoichiometric coefficient  \(\Phi = 0.92\)  and a Reynolds number  \(\mathrm{Re}= 1000\) , a reverse flow zone is detected near the impact surface when this surface is located at a distance of three calibers from the nozzle exit. The temperature field of a gas-droplet flame is measured using laser-induced fluorescence.