Recent studies [Hoeijmakers et al. 2014, Emmert et al. 2015] suggest that thermoacoustic modes can appear in combustors with anechoic terminations, which have no acoustic eigenmodes. These modes, called here Intrinsic ThermoAcoustic (ITA), can be predicted with simple theoretical arguments, but have been ignored for a long time. They are reproduced in this paper using Direct Numerical Simulation (DNS) of a laminar premixed Bunsen type flame. DNS results and theory are compared showing very good agreement in terms of both frequency and mode structure. DNS confirms that the frequency of ITA modes does not depend on any acoustic characteristic of the burner. Based on a numerical evaluation of the Flame Transfer Function, stability limits of IT...
Accurately predicting the thermoacoustic modes of a combustor depends upon knowledge of the thermody...
The thermoacoustic stability behaviour of a flame is experimentally investigated in the presence of ...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...
The interplays between acoustic and intrinsic modes in a model of a Rijke burner are revealed and th...
We propose a general classification of all the modes of a given thermoacoustic system into two sets:...
This study analyses the interplay between classical acoustic modes and intrinsic thermoacoustic (ITA...
International audienceThis article describes recent progress on premixed flame dynamics interacting ...
The study is concerned with theoretical examination of thermo-acoustic instabilities in combustors a...
A recent study (Yong, Silva, and Polifke, Combust. Flame 228 (2021)) proposed the use of phasor diag...
The study is concerned with theoretical examination of thermo-acoustic instabilities in combustors a...
We investigate the onset of thermoacoustic instabilities in a turbulent combustor terminated with an...
A study of Intrinsic Thermo-Acoustic (ITA) instability behavior of flames anchored to a burner deck ...
The work is concerned with the theoretical examination of a new type of thermo-acoustic instability ...
Thermoacoustic instabilities are a serious problem for lean premixed combustion systems. Due to diff...
From small scale energy systems such as domestic boilers up to rocket motors, combustion chambers ar...
Accurately predicting the thermoacoustic modes of a combustor depends upon knowledge of the thermody...
The thermoacoustic stability behaviour of a flame is experimentally investigated in the presence of ...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...
The interplays between acoustic and intrinsic modes in a model of a Rijke burner are revealed and th...
We propose a general classification of all the modes of a given thermoacoustic system into two sets:...
This study analyses the interplay between classical acoustic modes and intrinsic thermoacoustic (ITA...
International audienceThis article describes recent progress on premixed flame dynamics interacting ...
The study is concerned with theoretical examination of thermo-acoustic instabilities in combustors a...
A recent study (Yong, Silva, and Polifke, Combust. Flame 228 (2021)) proposed the use of phasor diag...
The study is concerned with theoretical examination of thermo-acoustic instabilities in combustors a...
We investigate the onset of thermoacoustic instabilities in a turbulent combustor terminated with an...
A study of Intrinsic Thermo-Acoustic (ITA) instability behavior of flames anchored to a burner deck ...
The work is concerned with the theoretical examination of a new type of thermo-acoustic instability ...
Thermoacoustic instabilities are a serious problem for lean premixed combustion systems. Due to diff...
From small scale energy systems such as domestic boilers up to rocket motors, combustion chambers ar...
Accurately predicting the thermoacoustic modes of a combustor depends upon knowledge of the thermody...
The thermoacoustic stability behaviour of a flame is experimentally investigated in the presence of ...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...