IR thermography study of flow structure and parameters in diffusion flames

The flame structure and flow modes have been investigated in the process of diffusion combustion of a number of liquid fuels, such as ethanol, benzine, kerosene and diesel fuel, by using the technique of infrared (IR) thermography in the narrow spectral range (2.5-2.7 microm). IR thermography provid...

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Bibliographic Details
Published in:Infrared physics and technology Vol. 117. P. 103851 (1-11)
Other Authors: Loboda, Egor L., Matvienko, Oleg V., Agafontsev, Mikhail V., Reyno, Vladimir V., Vavilov, Vladimir P.
Format: Article
Language:English
Subjects:
Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:000897637
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245 1 0 |a IR thermography study of flow structure and parameters in diffusion flames  |c E. L. Loboda, O. V. Matvienko, M. V. Agafontsev [et al.] 
336 |a Текст 
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504 |a Библиогр.: 68 назв. 
520 3 |a The flame structure and flow modes have been investigated in the process of diffusion combustion of a number of liquid fuels, such as ethanol, benzine, kerosene and diesel fuel, by using the technique of infrared (IR) thermography in the narrow spectral range (2.5-2.7 microm). IR thermography provides useful information on the thermal behavior of turbulent diffusion flames, which is the thermal representation of turbulent processes in the hydrodynamic structure of flames. By analyzing IR images and spectra of flame temperature fluctuations, seven characteristic zones with different flow modes have been identified in the flames. To estimate flame flow parameters, the turbulent Reynolds number has been used thus taking account the amplitude and frequency of the temperature fluctuations determined by processing IR images of flames. The Reynolds number strongly increases during the diffusion combustion of kerosene, in contrast to benzine, diesel fuel and ethanol. This can be explained by a more complex chemical composition of kerosene and a multi-stage character of chemical reactions 
653 |a инфракрасная термография 
653 |a горение 
653 |a углеводороды 
653 |a структура пламени 
653 |a Рейнольдса число 
655 4 |a статьи в журналах  |9 879358 
700 1 |a Loboda, Egor L.  |9 563697 
700 1 |a Matvienko, Oleg V.  |9 97675 
700 1 |a Agafontsev, Mikhail V.  |9 51379 
700 1 |a Reyno, Vladimir V.  |9 396096 
700 1 |a Vavilov, Vladimir P.  |9 100150 
773 0 |t Infrared physics and technology  |d 2021  |g Vol. 117. P. 103851 (1-11)  |x 1350-4495 
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