Infrared Thermography of The Process of Surface Forest Fire Spread and Transition to Crown Fire; Russian Journal of Nondestructive Testing; Vol. 61, iss. 10

Dades bibliogràfiques
Parent link:Russian Journal of Nondestructive Testing=Дефектоскопия.— .— New York: Springer Science+Business Media LLC.
Vol. 61, iss. 10.— 2025.— P. 1167–1174
Altres autors: Kasymov D. P. Denis Petrovich, Agafontsev M. V. Mikhail Vladimirovich, Perminov V. A. Valery Afanasievich, Belkova T. A. Tatiana Anatolievna
Sumari:Title screen
The transition from a surface forest fire to a crown fire was experimentally studied under laboratory conditions. Using noncontact infrared (IR) diagnostic methods within narrow spectral ranges of infrared wavelengths, the propagation speed of the fire front was determined, along with temperature changes at control points where the combustion transitions from a surface fire to a crown fire. The experiment was conducted under varying incoming airflow velocities and different canopy heights relative to the surface fire. In the infrared range, the radiation from the sample surfaces was recorded using a JADE J530SB thermal imaging camera equipped with an optical filter (2.5–2.7 μm), enabling temperature measurements within the range of 310–1500 K. To interpret the recorded radiation from the test samples, calibration data provided by the manufacturer of the narrowband optical filter was used
Текстовый файл
AM_Agreement
Idioma:anglès
Publicat: 2025
Matèries:
Accés en línia:https://doi.org/10.1134/S1061830925700329
Статья на русском языке
Format: Electrònic Capítol de llibre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=685333

MARC

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330 |a The transition from a surface forest fire to a crown fire was experimentally studied under laboratory conditions. Using noncontact infrared (IR) diagnostic methods within narrow spectral ranges of infrared wavelengths, the propagation speed of the fire front was determined, along with temperature changes at control points where the combustion transitions from a surface fire to a crown fire. The experiment was conducted under varying incoming airflow velocities and different canopy heights relative to the surface fire. In the infrared range, the radiation from the sample surfaces was recorded using a JADE J530SB thermal imaging camera equipped with an optical filter (2.5–2.7 μm), enabling temperature measurements within the range of 310–1500 K. To interpret the recorded radiation from the test samples, calibration data provided by the manufacturer of the narrowband optical filter was used 
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463 1 |t Vol. 61, iss. 10  |v P. 1167–1174  |d 2025 
610 1 |a infrared thermography 
610 1 |a forest fire 
610 1 |a crown fire 
610 1 |a time to ignition 
610 1 |a combustion 
610 1 |a fire front propagation 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
701 1 |a Kasymov  |b D. P.  |g Denis Petrovich  |f 1989-  |c mechanic  |c Senior Researcher of Tomsk Polytechnic University, Candidate of physical and mathematical sciences  |9 88963 
701 1 |a Agafontsev  |b M. V.  |g Mikhail Vladimirovich 
701 1 |a Perminov  |b V. A.  |c specialist in the field of ecology and life safety  |c Professor of Tomsk Polytechnic University, doctor of physical and mathematical Sciences  |f 1958-  |g Valery Afanasievich  |9 18369 
701 1 |a Belkova  |b T. A.  |c specialist in the field of ecology and life safety  |c Assistant of assistant of the department Tomsk Polytechnic University  |f 1991-  |g Tatiana Anatolievna  |y Tomsk  |9 89202 
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