This paper reports upon developments in the simulation of the passive control of combustion dynamics in industrial gas turbines using acoustic attenuation devices such as Helmholtz resonators and perforated liners. Combustion instability in gas turbine combustors may, if uncontrolled, lead to large-amplitude pressure fluctuations, with consequent serious mechanical problems in the gas turbine combustor system. Perforated combustor walls and Helmholtz resonators are two commonly used passive instability control devices. However, experimental design of the noise attenuation device is time-consuming and calls for expensive trial and error practice. Despite significant advances over recent decades, the ability of Computational Fluid Dynamics to...
Combustion instabilities (thermo-acoustic pressure oscillations) have been recognised for some time ...
Combustion instability in gas turbine combustors is caused by a resonant feedback among the flame zo...
One of the main impediments to successful operation of combustion systems in industrial and aerospac...
© 2019 by the authors. Helmholtz resonators, traditionally designed as a narrow neck backed by a cav...
In this paper, a novel model is proposed for the numerical simulation of noise-attenuating perforate...
Combustion instabilities are caused by a coupling between acoustic waves and unsteady heat release. ...
Passive acoustic dampers in the form of Helmholtz resonators, perforated plates and liners, are comm...
This work is concerned with the fluid dynamic processes and the associated loss of acoustic energy p...
Combustion instabilities are inevitable phenomena during the development and operation of propulsion...
To control combustion instabilities occurring in LPP gas turbine combustors, several active and pass...
Many industries have entered a new global phase which takes the environment in mind. The gas turbine...
International audienceDespite extensive efforts, controlling combustion instabilities in modern gas ...
International audienceWhen coupled to acoustics, unsteady heat release oscillations may cause recurr...
Gas turbines for power generation use lean premixed flames to adhere to the strict pollutant emissio...
In this paper the validity limits for a pulsating combustion unit have been determined, which has be...
Combustion instabilities (thermo-acoustic pressure oscillations) have been recognised for some time ...
Combustion instability in gas turbine combustors is caused by a resonant feedback among the flame zo...
One of the main impediments to successful operation of combustion systems in industrial and aerospac...
© 2019 by the authors. Helmholtz resonators, traditionally designed as a narrow neck backed by a cav...
In this paper, a novel model is proposed for the numerical simulation of noise-attenuating perforate...
Combustion instabilities are caused by a coupling between acoustic waves and unsteady heat release. ...
Passive acoustic dampers in the form of Helmholtz resonators, perforated plates and liners, are comm...
This work is concerned with the fluid dynamic processes and the associated loss of acoustic energy p...
Combustion instabilities are inevitable phenomena during the development and operation of propulsion...
To control combustion instabilities occurring in LPP gas turbine combustors, several active and pass...
Many industries have entered a new global phase which takes the environment in mind. The gas turbine...
International audienceDespite extensive efforts, controlling combustion instabilities in modern gas ...
International audienceWhen coupled to acoustics, unsteady heat release oscillations may cause recurr...
Gas turbines for power generation use lean premixed flames to adhere to the strict pollutant emissio...
In this paper the validity limits for a pulsating combustion unit have been determined, which has be...
Combustion instabilities (thermo-acoustic pressure oscillations) have been recognised for some time ...
Combustion instability in gas turbine combustors is caused by a resonant feedback among the flame zo...
One of the main impediments to successful operation of combustion systems in industrial and aerospac...