Title of article :
A study of JP-8 surrogate coflow flame structure by combined use of laser diagnostics and numerical simulation
Author/Authors :
Tosatto، نويسنده , , Luca and Mella، نويسنده , , Federico and Long، نويسنده , , Marshall B. and Smooke، نويسنده , , Mitchell D.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
13
From page :
3027
To page :
3039
Abstract :
The structure of a JP-8 coflow flame is investigated by applying laser diagnostic techniques to three different fuel surrogates. The results are compared against theoretical predictions from numerical simulations; very good agreement is obtained for temperature and major species. gh and Raman scattering are used to measure temperature and major species mole fractions in the flame (oxygen, carbon dioxide, water, and fuel molecules). Quantitative laser diagnostic techniques are particularly challenging when applied to jet-fuel flames; the presence of aromatic molecules in the fuel mixtures and the formation of polyaromatic compounds inside the flame generate spectrally broad fluorescence signals that interfere with the measurement. A polarized/depolarized subtraction technique combined with a post-processing filter based on least-squares fitting is used to mitigate this undesired effect. The proposed technique tries to match the experimental signal against previously calculated spectra and has proved to be a very efficient filter at rejecting polyaromatic fluorescence. cal simulations play a fundamental role in this study. Computer predictions are used not only to compare experimental data, but as an active component of the data post-processing. For example, numerically calculated cross-section maps are used to refine the measured temperature for both the Rayleigh and Raman experiments.
Keywords :
Raman , jet fuel , laser diagnostics , Rayleigh scattering , Laminar flames
Journal title :
Combustion and Flame
Serial Year :
2012
Journal title :
Combustion and Flame
Record number :
2276512
Link To Document :
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