Отрывок: Figure 1 shows the flame structure with the superficial flow velocity of 1.7 m/s when the front is stable and located at the interface between upstream and downstream layers. It can be noticed that the front is highly curved and stretched by the flow. During that, it anchors the particles and locates at the separating layer behind them. Similar flame behavior has been observed in many studies, devoted to flames near bluff b...
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dc.date.accessioned2022-10-06 14:28:48-
dc.date.available2022-10-06 14:28:48-
dc.date.issued2022ru
dc.identifierRU\НТБ СГАУ\490180ru
dc.identifier.citationPore-scale numerical simulation of flame stabilization in two-layer porous burner // International Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022) / V. N. Azyazov, A. M. Mayorova. - Samara : Publishing OOO “Insoma-Press”, 2022. - P. 61.ru
dc.identifier.urihttp://repo.ssau.ru/handle/International-Conference/Porescale-numerical-simulation-of-flame-stabilization-in-twolayer-porous-burner-98843-
dc.language.isoengru
dc.sourceInternational Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022)ru
dc.titlePore-scale numerical simulation of flame stabilization in two-layer porous burnerru
dc.typeTextru
dc.textpartFigure 1 shows the flame structure with the superficial flow velocity of 1.7 m/s when the front is stable and located at the interface between upstream and downstream layers. It can be noticed that the front is highly curved and stretched by the flow. During that, it anchors the particles and locates at the separating layer behind them. Similar flame behavior has been observed in many studies, devoted to flames near bluff b...-
Располагается в коллекциях: International Conference on Combustion Physics and Chemistry

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