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Experimental determination of soot refractive index in the infrared.

F.X. Ouf (1,2) , A. Coppalle (2) , J. Vendel (1) , M.E. Weill (2) , J. Yon (2) - CFA 2005 - 21ème congrès français sur les aérosols, 14-15/12/05, Paris.

Document type > *Congrès/colloque

Keywords > aerosols - measuring methods


Authors > OUF François-Xavier, VENDEL Jacques

Publication Date > 14/12/2005


The study of physical properties of soot particles produced during combustion is a complex subject but of a great interest within the framework of the study of the safety of an installation, with respect to the fire hazard. These characteristics are, in this case, particularly useful in order to predict the behaviour of containment barriers in situation of fire, but also in order to estimate the contribution of these particles to radiative transfers. The aim of this study is to determine the radiative properties of soot particles produced during combustion. A specific device, which establishes extinction and vertical-vertical scattering coefficients, has been developed and has allowed to determine the refractive index of soot particles in the infrared. This determination also needed the establishment of size distribution and morphological properties of soot aggregates. We present in this document the experimental device developed, and the validation of this device on latex spheres which optical properties are well known. First results of extinction coefficients will be presented and will underline the similar optical behaviour of different soot aggregates. Values of refractive index will be detailed and discussed, and a direct application of these values will be carried out in order to determine the soot volume fraction. A comparison with reference method will underline the efficiency of our method. We will conclude on the validity of the information brought by this device and on the prospects of this study. A discussion is included, on the utility of mean values of refractive index and on the determination of total emissivity of soot particles.

(1) Institut de Radioprotection et de Sûreté Nucléaire DSU/SERAC, Laboratoire de Physique et Métrologie des Aérosols, BP 68, 91192 Gif-sur-Yvette Cedex
(2) UMR 6614 CORIA, Site universitaire du Madrillet – Avenue de l’université BP 12
76801 Saint Etienne du Rouvray Cedex


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