Application of Planar Laser-Induced Fluorescence for Interfacial Transfer Phenomena; Energies; Vol. 16, iss. 4

التفاصيل البيبلوغرافية
Parent link:Energies.— .— Basel: MDPI AG
Vol. 16, iss. 4.— 2023.— Article number 1877, 16 p.
مؤلفون آخرون: Dulin V. M. Vladimir Mikhaylovich, Cherdantsev A. V. Andrey Vladimirovich, Volkov R. S. Roman Sergeevich, Markovich D. M. Dmitry Markovich
الملخص:Title screen
The present review describes the current achievements in the applications of a planar laser-induced fluorescence (PLIF) method for the diagnostics of liquid films, bubbles, individual droplets, and sprays. Such flows are related with strongly curved interphases, which often results in additional high errors during the PLIF data quantification because of laser light reflection, refraction, and absorption. The present review demonstrates that a two-color PLIF approach and a PLIF modification for regularly structured illumination resolves the reflection- and refraction-caused errors. The latter modification ensures proper phase separation in the measurement cross-section and visualization of the interface dynamics. The former approach provides the accurate evaluation of the local temperature and concentration both in liquid and gaseous phases even in the case of strong variations of the laser sheet intensity. With intensified cameras, the PLIF method is used for multi-parameter diagnostics of the two-phase combustion of sprays in combustion chambers with optical access. It visualizes and quantifies the liquid fuel evaporation and mixing, to measure temperature in the gas and liquid phases and to reveal the regions of pollutant formation. The PLIF technique can also be easily combined with a particle image (or tracking) velocimetry method, to evaluate local heat and mass transfer
Текстовый файл
اللغة:الإنجليزية
منشور في: 2023
الموضوعات:
الوصول للمادة أونلاين:https://doi.org/10.3390/en16041877
التنسيق: الكتروني فصل الكتاب
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=680074

MARC

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330 |a The present review describes the current achievements in the applications of a planar laser-induced fluorescence (PLIF) method for the diagnostics of liquid films, bubbles, individual droplets, and sprays. Such flows are related with strongly curved interphases, which often results in additional high errors during the PLIF data quantification because of laser light reflection, refraction, and absorption. The present review demonstrates that a two-color PLIF approach and a PLIF modification for regularly structured illumination resolves the reflection- and refraction-caused errors. The latter modification ensures proper phase separation in the measurement cross-section and visualization of the interface dynamics. The former approach provides the accurate evaluation of the local temperature and concentration both in liquid and gaseous phases even in the case of strong variations of the laser sheet intensity. With intensified cameras, the PLIF method is used for multi-parameter diagnostics of the two-phase combustion of sprays in combustion chambers with optical access. It visualizes and quantifies the liquid fuel evaporation and mixing, to measure temperature in the gas and liquid phases and to reveal the regions of pollutant formation. The PLIF technique can also be easily combined with a particle image (or tracking) velocimetry method, to evaluate local heat and mass transfer 
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461 1 |t Energies  |c Basel  |n MDPI AG 
463 1 |t Vol. 16, iss. 4  |v Article number 1877, 16 p.  |d 2023 
610 1 |a электронный ресурс 
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610 1 |a planar laser-induced fluorescence 
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610 1 |a sprays 
610 1 |a droplets 
610 1 |a bubbles 
610 1 |a planar imaging 
701 1 |a Dulin  |b V. M.  |g Vladimir Mikhaylovich 
701 1 |a Cherdantsev  |b A. V.  |g Andrey Vladimirovich 
701 1 |a Volkov  |b R. S.  |c specialist in the field of power engineering  |c Associate Professor of the Tomsk Polytechnic University, candidate of technical Sciences  |f 1987-  |g Roman Sergeevich  |9 17499 
701 1 |a Markovich  |b D. M.  |c specialist in the field of energy  |c Professor of Tomsk Polytechnic University, doctor of physical and mathematical Sciences  |f 1962-  |g Dmitry Markovich  |9 18343 
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