Title: Visualization of thermal diffusion instability of a combustion wave in Zeldovich-Barenblatt parameter
Issue Date: May-2019
Publisher: Новая техника
Citation: Gulyaev P. Visualization of thermal diffusion instability of a combustion wave in Zeldovich-Barenblatt parameter / Gulyaev P., Dolmatov A., Jordan V. // Сборник трудов ИТНТ-2019 [Текст]: V междунар. конф. и молодеж. шк. "Информ. технологии и нанотехнологии": 21-24 мая: в 4 т. / Самар. нац.-исслед. ун-т им. С. П. Королева (Самар. ун-т), Ин-т систем. обраб. изобр. РАН-фил. ФНИЦ "Кристаллография и фотоника" РАН; [под ред. В.А. Соболева]. – Самара: Новая техника, 2019. – Т. 3: Математическое моделирование физико-технических процессов и систем. - 2019. - С. 617-621.
Abstract: The study of the thermal structure of the combustion wave of self-propagating high-temperature synthesis using differential chronoscopy (DCS), using the example of the Ni-Al system, demonstrates the possibility of estimating the criterion of thermal diffusion instability of the front in accordance with the Zeldovich-Barenblatt model. Application of standard image recognition methods, in the form of a high-speed Trace-transform algorithm, to a 2D chronogram of the interframe difference in the coordinates of the combustion front, calculated from high-speed video recording of the propagation of a CBC wave as a DCS-map, demonstrates the ability to control the sustainability mode of the burning wave in situ.
URI: http://repo.ssau.ru/jspui/handle/123456789/11495
Appears in Collections:Информационные технологии и нанотехнологии

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