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Controlling a Multistage Ignition Assisted by a High-Frequency Corona Discharge

ORAL · Invited

Abstract

Within the frame of the modern strategy of low-temperature combustion (LTC), it is proposed to use lean fuel-air mixtures that are sensitive to the equivalence ratio. Such mixtures display a multistage ignition behavior. Nanosecond discharge impact on a multistage ignition provides the key to controlling oxidation and combustion processes in systems for practical applications. Using propane-air mixture it is shown by modeling that a nanosecond discharge does not suppress, but stimulates the development of cool flame and increases its intensity; and also reduces the non-monotonic oxidation of mixture with increasing the initial temperature, up to suppression of the negative temperature coefficient of oxidation rate. Based on these results, the method is proposed for organizing the combustion of lean mixture in the HCCI engine by changing the reaction path of LTC stage by activating the mixture with a high-frequency corona discharge (5 MHz) and stimulating the auto-ignition due to compression. This method allows us to improve the exhaust composition for CO, UHC, NOx.  The possibility of controlling the propagation mode of combustion wave with the transition to propagation of auto-ignition waves using a high-frequency corona discharge is shown. The discharge does not directly ignite the mixture due to a small specific energy input. These results can be applied to a hybrid engine, which in stable conditions operates as HCCI engine, and in unstable conditions, a high-frequency corona discharge could be an initiator of combustion.

Publication: 1. Filimonova E.A. Discharge effect on the negative temperature coefficient behaviour and multistage ignition in C3H8-air mixture. J. Phys. D: Appl. Phys. 2015. V. 48. 015201.<br>2. Filimonova E., Bocharov A. Bityurin V. Influence of a non-equilibrium discharge impact on the low temperature combustion stage in the HCCI engine. Fuel. 2018. V. 228. C.309-322.<br>3. Filimonova E.A., Bocharov A.N., Dobrovolskaya A.S., Bityurin V.A. Influence of nanoseconds pulsed discharges on the composition of intermediate and final combustion products in the HCCI engine. Plasma Chemistry and Plasma Processing. 2019. V.39. № 3. P. 683-694. <br>4. Filimonova E.A., Dobrovolskaya A.S., Bocharov A.N., Bityurin V.A., Naidis G.V. Formation of combustion wave in lean propane-air mixture with a non-uniform chemical reactivity initiated by nanosecond streamer discharges in the HCCI engine. Combustion and Flame. 2020. V.215. P. 401-416. <br>5. Controlling an auto-ignition by a non-equilibrium plasma of high-frequency corona discharge in the HCCI engine. Will be submitted in 'Combustion and Flame."

Presenters

  • Elena Filimonova

    Joint Institute for High Temperatures of Russian Academy of Sciences

Authors

  • Elena Filimonova

    Joint Institute for High Temperatures of Russian Academy of Sciences

  • Anastasia Dobrovolskaya

    Joint Institute for High Temperatures of Russian Academy of Sciences