Tackling the problem of emissions is at the forefront of scientific research today. While industrial engines designed to operate in stable regimes produce emissions, attempts to operate them at 'greener' conditions often fail due to a dangerous phenomenon known as thermoacoustic instability. Hazardous high amplitude periodic oscillations during thermoacoustic instability lead to the failure of these engines in power plants, aircraft, and rockets. To prevent this catastrophe in the first place, identifying the onset of thermoacoustic instability is required. However, detecting the onset is a major obstacle preventing further progress due to spatiotemporal variability in the reacting field. Here, we show how to overcome this obstacle by disco...
Rocket engine combustors are prone to transverse instabilities that are characterized by large ampli...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
© 2009 Dr. William H. MoaseThe use of lean, premixed combustion in gas turbines is now widespread du...
Tackling the problem of emissions is at the forefront of scientific research today. While industrial...
Tackling the problem of emissions is at the forefront of scientific research today. While industrial...
The burning of fossil fuels to generate power produces harmful emissions. Lowering such emissions in...
This experimental study investigates the dynamical transition from stable operation to thermoacousti...
Thermoacoustic systems with a turbulent reactive flow, prevalent in the fields of power and propulsi...
Industrial combustion systems such as power generation gas turbines, rocket motors, furnaces and boi...
This publication is with permission of the rights owner freely accessible due to an Alliance licence...
This publication is with permission of the rights owner freely accessible due to an Alliance licence...
In turbulent combustors, the transition from stable combustion (i.e. combustion noise) to thermoacou...
In the context of this work we attempt to examine the intermittency characteristics of thermoacousti...
The prediction of thermoacoustic instabilities is fundamental for combustion systems such as domesti...
This thesis numerically predicts thermoacoustic instability in two typical gas turbine combustors. I...
Rocket engine combustors are prone to transverse instabilities that are characterized by large ampli...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
© 2009 Dr. William H. MoaseThe use of lean, premixed combustion in gas turbines is now widespread du...
Tackling the problem of emissions is at the forefront of scientific research today. While industrial...
Tackling the problem of emissions is at the forefront of scientific research today. While industrial...
The burning of fossil fuels to generate power produces harmful emissions. Lowering such emissions in...
This experimental study investigates the dynamical transition from stable operation to thermoacousti...
Thermoacoustic systems with a turbulent reactive flow, prevalent in the fields of power and propulsi...
Industrial combustion systems such as power generation gas turbines, rocket motors, furnaces and boi...
This publication is with permission of the rights owner freely accessible due to an Alliance licence...
This publication is with permission of the rights owner freely accessible due to an Alliance licence...
In turbulent combustors, the transition from stable combustion (i.e. combustion noise) to thermoacou...
In the context of this work we attempt to examine the intermittency characteristics of thermoacousti...
The prediction of thermoacoustic instabilities is fundamental for combustion systems such as domesti...
This thesis numerically predicts thermoacoustic instability in two typical gas turbine combustors. I...
Rocket engine combustors are prone to transverse instabilities that are characterized by large ampli...
The paper examines the combined effects of several interacting thermo-acoustic and hydrodynamic inst...
© 2009 Dr. William H. MoaseThe use of lean, premixed combustion in gas turbines is now widespread du...