The interaction between unsteady heat release and acoustic pressure oscillations in gas turbines results in self-excited combustion oscillations which can potentially be strong enough to cause significant structural damage to the combustor. Correctly predicting the interaction of these processes, and anticipating the onset of these oscillations can be difficult. In recent years much research effort has focused on the response of premixed flames to velocity and equivalence ratio perturbations. In this paper, we develop a flame model based on the socalled G-Equation, which captures the kinematic evolution of the flame surfaces, under the assumptions of axisymmetry, and ignoring vorticity and compressibility. This builds on previous work by Do...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...
AbstractLean premixed combustion chambers are susceptible to combustion instabilities arising from t...
International audienceThe response of flames to incident perturbations is of central interest in com...
The adoption of lean premixed prevaporised combustion systems can reduce NOx emissions from gas turb...
Numerical simulations aid combustor design to avoid and reduce thermo-acoustic oscillations. Non-lin...
Numerical simulations aid combustor design to avoid and reduce thermo-acoustic oscillations. Non-lin...
The persistent thrust for a cleaner, greener environment has prompted air pollution regulations to b...
Numerical simulations aid combustor design to avoid and reduce thermoacoustic oscillations. Non-line...
A model for the response of technically premixed flames to equivalence ratio perturbations is propos...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
Accurate prediction of limit cycle oscillations resulting from combustion instability has been a lon...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
AbstractAccurate prediction of limit cycle oscillations resulting from combustion instability has be...
Lean premixed combustion chambers are susceptible to combustion instabilities arising from the coupl...
Turbulent premixed flames often experience thermoacoustic instabilities when the combustion heat rel...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...
AbstractLean premixed combustion chambers are susceptible to combustion instabilities arising from t...
International audienceThe response of flames to incident perturbations is of central interest in com...
The adoption of lean premixed prevaporised combustion systems can reduce NOx emissions from gas turb...
Numerical simulations aid combustor design to avoid and reduce thermo-acoustic oscillations. Non-lin...
Numerical simulations aid combustor design to avoid and reduce thermo-acoustic oscillations. Non-lin...
The persistent thrust for a cleaner, greener environment has prompted air pollution regulations to b...
Numerical simulations aid combustor design to avoid and reduce thermoacoustic oscillations. Non-line...
A model for the response of technically premixed flames to equivalence ratio perturbations is propos...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
Accurate prediction of limit cycle oscillations resulting from combustion instability has been a lon...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
AbstractAccurate prediction of limit cycle oscillations resulting from combustion instability has be...
Lean premixed combustion chambers are susceptible to combustion instabilities arising from the coupl...
Turbulent premixed flames often experience thermoacoustic instabilities when the combustion heat rel...
Premix burners are sensitive to noise, and selfexcited combustion oscillations can become so intense...
AbstractLean premixed combustion chambers are susceptible to combustion instabilities arising from t...
International audienceThe response of flames to incident perturbations is of central interest in com...