Title: Spin instability criteria based on parametric identification of the node distribution in Trace transform direct image of the SHS combustion wave chronogram
Issue Date: 2020
Publisher: Самарский национальный исследовательский университет
Citation: Grigoryevskaya A. Spin instability criteria based on parametric identification of the node distribution in Trace transform direct image of the SHS combustion wave chronogram / A. Grigoryevskaya, P. Gulyaev, V. Jordan1, I. Shmakov // Информационные технологии и нанотехнологии (ИТНТ-2020). Сборник трудов по. материалам VI Международной конференции и молодежной школы (г. Самара, 26-29 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: Изд-во Самар. ун-та, 2020. – Том 3. Математическое моделирование физико-технических процессов и систем. – 2020. – С. 335-340.
Series/Report no.: ;50
Abstract: The article gives examples of virtual chronograms of the propagation of a combustion wave in the diffusion, thermal, and spin instabilities of the SHS process. It is shown that the use of high-speed video recording allows one to reliably determine the moment of occurrence of the spin instability of the SHS combustion wave by differential chronoscopy methods. As a criterion for the recognition of spin instability, we selected the sign of the appearance of local maxima in the central transversal region of the spectrum of the trace transform. It is concluded that the spin instability is characteristic of the transition from the thermal to diffusion instability, in the presence of a hysteretic dependence of the burning rate on temperature.
URI: http://repo.ssau.ru/jspui/handle/123456789/12654
ISBN: 978-5-7883-1513-3
Appears in Collections:Информационные технологии и нанотехнологии

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