Microexplosive Fragmentation of Liquid-Biofuel Droplets / D. V. Antonov, P. A. Strizhak

Уровень набора: Technical Physics LettersОсновной Автор-лицо: Antonov, D. V., specialist in the field of heat and power engineering, Research Engineer of Tomsk Polytechnic University, 1996-, Dmitry VladimirovichАльтернативный автор-лицо: Strizhak, P. A., Specialist in the field of heat power energy, Doctor of Physical and Mathematical Sciences (DSc), Professor of Tomsk Polytechnic University (TPU), 1985-, Pavel AlexandrovichКоллективный автор (вторичный): Национальный исследовательский Томский политехнический университет, Инженерная школа энергетики, Научно-образовательный центр И. Н. Бутакова (НОЦ И. Н. Бутакова)Язык: английский.Резюме или реферат: The results of experimental studies of the processes of fragmentation of liquid-biofuel droplets based on water, rapeseed oil, and biomass during heating in a high-temperature gaseous medium in the microexplosion and puffing modes are presented. The ranges of temperature variation are established at which the regimes of partial fragmentation and complete microexplosive disintegration of droplets are stably implemented. When processing videograms, the delay times for fragmentation and the total lifetime of droplets are calculated. The influence of the concentration of components in a droplet on the conditions of heating, evaporation, fragmentation, and their ignition has been determined..Примечания о наличии в документе библиографии/указателя: [References: 9 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | multicomponent drops | liquid biofuels | microexplosion | fragmentation | secondary grinding Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 9 tit.]

The results of experimental studies of the processes of fragmentation of liquid-biofuel droplets based on water, rapeseed oil, and biomass during heating in a high-temperature gaseous medium in the microexplosion and puffing modes are presented. The ranges of temperature variation are established at which the regimes of partial fragmentation and complete microexplosive disintegration of droplets are stably implemented. When processing videograms, the delay times for fragmentation and the total lifetime of droplets are calculated. The influence of the concentration of components in a droplet on the conditions of heating, evaporation, fragmentation, and their ignition has been determined.

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