One of the major concerns in the operability of power generation systems is their susceptibility to combustion instabilities. In this work, we explore whether a heat exchanger, an integral component of a domestic boiler, can be made to act as a passive controller that suppresses combustion instabilities. The combustor is modelled as a quarter-wave resonator (1-D, open at one end, closed at the other) with a compact heat source inside, which is modelled by a time-lag law. The heat exchanger is modelled as an array of tubes with bias flow and is placed near the closed end of the resonator, causing it to behave like a cavity-backed slit plate: an effective acoustic absorber. For simplicity and ease of analysis, we treat the physical processes ...
Combustion instabilities are caused by the interaction between unsteady heat releases and acoustic w...
Thermo-acoustic instability results in large amplitude oscillations in pressure and heat release. Th...
Heat exchanger tube rows can influence the thermoacoustic instability behaviour of combustion system...
One of the major concerns in the operability of power generation systems is their susceptibility to ...
One of the major concerns in the operability of power generation systems is their susceptibility to ...
Thermoacoustic instabilities pose a great threat to combustion systems, as they could cause severe s...
Thermoacoustic instabilities, caused by the feedback between unsteady heat release and acoustic pres...
Thermoacoustic instabilities, caused by the feedback between unsteady heat release and acoustic pres...
International audiencePassive control of combustion instabilities is explored in the case of systems...
Results of a computational study on the effectiveness of various passive devices for the control of ...
The goal of the present work is to investigate the effects of a heat exchanger on the instabilities ...
This study deals with passive control of acoustic-flame instabilities in a multipoint injection config...
In this paper, we develop a linear technique that predicts how the stability of a thermo-acoustic sy...
\u3cp\u3eHeat exchangers are an essential constituent part of many combustion systems. The thermoaco...
Combustion instabilities are caused by the interaction between unsteady heat releases and acoustic w...
Thermo-acoustic instability results in large amplitude oscillations in pressure and heat release. Th...
Heat exchanger tube rows can influence the thermoacoustic instability behaviour of combustion system...
One of the major concerns in the operability of power generation systems is their susceptibility to ...
One of the major concerns in the operability of power generation systems is their susceptibility to ...
Thermoacoustic instabilities pose a great threat to combustion systems, as they could cause severe s...
Thermoacoustic instabilities, caused by the feedback between unsteady heat release and acoustic pres...
Thermoacoustic instabilities, caused by the feedback between unsteady heat release and acoustic pres...
International audiencePassive control of combustion instabilities is explored in the case of systems...
Results of a computational study on the effectiveness of various passive devices for the control of ...
The goal of the present work is to investigate the effects of a heat exchanger on the instabilities ...
This study deals with passive control of acoustic-flame instabilities in a multipoint injection config...
In this paper, we develop a linear technique that predicts how the stability of a thermo-acoustic sy...
\u3cp\u3eHeat exchangers are an essential constituent part of many combustion systems. The thermoaco...
Combustion instabilities are caused by the interaction between unsteady heat releases and acoustic w...
Thermo-acoustic instability results in large amplitude oscillations in pressure and heat release. Th...
Heat exchanger tube rows can influence the thermoacoustic instability behaviour of combustion system...