Evaluation of temperature gradients within combusting droplets in linear stream using two colors laser-induced fluorescence |
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Authors: | Guillaume Castanet Alain Delconte Fabrice Lemoine Loïc Mees Gèrard Gréhan |
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Affiliation: | (1) LEMTA (CNRS UMR 7563), 2, avenue de la Forêt de Haye, BP 160, 54504 Vanduvre-lès-Nancy cedex, France;(2) CORIA (CNRS UMR 6614), Avenue de lUniversité, BP 12, 76801 Saint Etienne du Rouvray, France |
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Abstract: | The scope of this paper concerns the heating process of fuel droplets injected in a hot gaseous environment. The two colors laser-induced fluorescence technique allows measuring the temperature distribution within a droplet by scanning the droplet volume by a sufficiently small probe volume compared to the droplet volume itself. The temperature field is reconstructed using two approaches which have been compared. One is based on a geometrical optics model and the other is based on the 3D calculation of the internal excitation field within the droplet, using the generalized Lorenz-Mie theory. Experimental results have been obtained on a combusting monodisperse ethanol droplet stream (diameter around 200 m). |
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