Regimes of combustion of a premixed mixture of gases in a heated microchannel with the wall temperature smoothly increasing in the downstream direction

Описание

Тип публикации: статья из журнала

Год издания: 2014

Идентификатор DOI: 10.1134/S0010508214010031

Ключевые слова: extinction, flame stabilization, flammability limits, ignition, microchannel, Characteristic length, Combustible mixture, Gas flow directions, Hysteresis phenomenon, Theoretical study, Wall temperatures, Channel flow, Flow rate, Gases, Light extinction, Microchannels, Mixtures, Stabilization, Thermal gradients, Combustion

Аннотация: Specific features of the unsteady flame in a microchannel with a controlled wall temperature are theoretically studied within the framework of a one-dimensional diffusion-thermal model. The case with the channel wall temperature increasing in the gas flow direction and the channel size being smaller than the critical value determinПоказать полностьюed on the basis of the ambient temperature is considered. Depending on the flow rate of the combustible mixture of gases through the channel, either flame stabilization or alternation of flame repetitive extinction/ignition is possible. The influence of the characteristic length of channel wall heating on the domains of existence of various combustion modes is studied for the first time. The theoretical study shows that there exists a critical value of the temperature gradient in the channel walls, below which the regime of flame repetitive extinction/ignition is no longer observed. At small values of the temperature gradient, a hysteresis phenomenon is found, which is associated with different changes in the flame position in the cases with increasing and decreasing flow rates of the gas. © 2014 Pleiades Publishing, Ltd.

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Издание

Журнал: Combustion, Explosion and Shock Waves

Выпуск журнала: Vol. 50, Is. 1

Номера страниц: 25-31

Персоны

  • Mazurok D.B. (Khristianovich Institute of Theoretical and Applied Mechanics, Siberian Branch, Russian Academy of Sciences, Novosibirsk 630090, Russian Federation, Far-East Federal University, Vladivostok 690091, Russian Federation)
  • Fursenko R.V. (Khristianovich Institute of Theoretical and Applied Mechanics, Siberian Branch, Russian Academy of Sciences, Novosibirsk 630090, Russian Federation, Far-East Federal University, Vladivostok 690091, Russian Federation)
  • Minaev S.S. (Khristianovich Institute of Theoretical and Applied Mechanics, Siberian Branch, Russian Academy of Sciences, Novosibirsk 630090, Russian Federation, Far-East Federal University, Vladivostok 690091, Russian Federation)
  • Lutsenko N.A. (Far-East Federal University, Vladivostok 690091, Russian Federation)
  • Kumar S. (Indian Institute of Technology, 400 076 Bombay Powai, Mumbai, India)

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