Turbulent premixed flames often experience thermoacoustic instabilities when the combustion heat release rate is in phase with acoustic pressure fluctuations. Linear methods often assume a priori that oscillations are periodic and occur at a dominant frequency with a fixed amplitude. Such assumptions are not made when using nonlinear analysis. When an oscillation is fully saturated, nonlinear analysis can serve as a useful avenue to reveal flame behaviour far more elaborate than period-one limit cycles, including quasi-periodicity and chaos in hydrodynamically or thermoacoustically self-excited system. In this paper, the behaviour of a bluff-body stabilised turbulent premixed propane/air flame in a model jet-engine afterburner configuration...
We experimentally study the nonlinear dynamics of a self-excited thermoacoustic system subjected to ...
Thermoacoustic oscillations constitute a serious threat to the integrity of combustion systems. The ...
A joint experimental and computational study of thermoacoustic instabilities in a model swirl-stabil...
Turbulent premixed flames often experience thermoacoustic instabilities when the combustion heat rel...
Bluff-body stabilized turbulent premixed flames can experience hydrodynamic instability caused by th...
Bluff-body stabilized turbulent premixed flames can experience hydrodynamic instability caused by th...
This thesis was awarded the Leonardo da Vinci prize in 2013 for outstanding doctoral research in flu...
This work is an investigation of the behavior of a premixed turbulent jet flame in a cylindrical dum...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
We investigate the onset of thermoacoustic instabilities in a turbulent combustor terminated with an...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
Thermoacoustic systems can oscillate self-excitedly, and often non-periodically, owing to coupling b...
AbstractThermoacoustic systems can oscillate self-excitedly, and often non-periodically, owing to co...
AbstractWe experimentally study the nonlinear dynamics of a self-excited thermoacoustic system subje...
Self-excited oscillations of a confined flame, burning in the wake of a bluff body flame holder, are...
We experimentally study the nonlinear dynamics of a self-excited thermoacoustic system subjected to ...
Thermoacoustic oscillations constitute a serious threat to the integrity of combustion systems. The ...
A joint experimental and computational study of thermoacoustic instabilities in a model swirl-stabil...
Turbulent premixed flames often experience thermoacoustic instabilities when the combustion heat rel...
Bluff-body stabilized turbulent premixed flames can experience hydrodynamic instability caused by th...
Bluff-body stabilized turbulent premixed flames can experience hydrodynamic instability caused by th...
This thesis was awarded the Leonardo da Vinci prize in 2013 for outstanding doctoral research in flu...
This work is an investigation of the behavior of a premixed turbulent jet flame in a cylindrical dum...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
We investigate the onset of thermoacoustic instabilities in a turbulent combustor terminated with an...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
Thermoacoustic systems can oscillate self-excitedly, and often non-periodically, owing to coupling b...
AbstractThermoacoustic systems can oscillate self-excitedly, and often non-periodically, owing to co...
AbstractWe experimentally study the nonlinear dynamics of a self-excited thermoacoustic system subje...
Self-excited oscillations of a confined flame, burning in the wake of a bluff body flame holder, are...
We experimentally study the nonlinear dynamics of a self-excited thermoacoustic system subjected to ...
Thermoacoustic oscillations constitute a serious threat to the integrity of combustion systems. The ...
A joint experimental and computational study of thermoacoustic instabilities in a model swirl-stabil...