International audiencehe flame response to upstream velocity perturbations is properly described by a Finite Impulse Response (FIR) model. When combining an FIR model with acoustic tools to predict thermoacoustic modal growth rates, uncertainties contained in the FIR model coefficients would propagate through the acoustic model, inducing deviations of the modal growth rate from its nominal value. Therefore, an associated uncertainty quantification (UQ) analysis, which focuses on quantifying the impact of FIR model uncertainties on the modal growth rate prediction, is a necessity to obtain a more reliable thermoacoustic instability prediction. To address this UQ problem, our present work proposes an analytical strategy featuring (1) compactl...
International audienceCombustion instabilities in a backward-facing step combustor are numerically s...
This paper presents four experimental methods for the evaluation of growth rates of combustion insta...
Thermoacoustic instabilities result from the interaction between acoustic pressure oscillations and ...
The objective of this paper is to quantify uncertainties in thermoacoustic stability analysis with a...
Thermoacoustic instabilities are a major threat for modern gas turbines. Frequency-domain based stab...
Most practical combustion systems such as industrial boilers, furnaces, land-based gas turbine engin...
© 2018 by ASME. Thermoacoustic instabilities are a major threat for modern gas turbines. Frequency-d...
In any thermoacoustic analysis, it is important not only to predict linear frequencies and growth ra...
Pollution and The Greenhouse Effect are a concern in our society. The high levels of CO2, NOx, ozone...
In this paper, results from a numerical solver for the Helmholtz equation using the Finite Element M...
he flame response to upstream velocity perturbations is properly described by a Finite Impulse Respo...
This work concerns the prediction of potentially damaging thermoacoustic oscillations in gas turbine...
In this paper, we will present a fast prediction tool based on a one-dimensional Green's function ap...
The paper presents a numerical methodology for the prediction of the thermoacoustic instabilities wi...
This theoretical paper concerns the influence of the phase of the heat release response on thermoaco...
International audienceCombustion instabilities in a backward-facing step combustor are numerically s...
This paper presents four experimental methods for the evaluation of growth rates of combustion insta...
Thermoacoustic instabilities result from the interaction between acoustic pressure oscillations and ...
The objective of this paper is to quantify uncertainties in thermoacoustic stability analysis with a...
Thermoacoustic instabilities are a major threat for modern gas turbines. Frequency-domain based stab...
Most practical combustion systems such as industrial boilers, furnaces, land-based gas turbine engin...
© 2018 by ASME. Thermoacoustic instabilities are a major threat for modern gas turbines. Frequency-d...
In any thermoacoustic analysis, it is important not only to predict linear frequencies and growth ra...
Pollution and The Greenhouse Effect are a concern in our society. The high levels of CO2, NOx, ozone...
In this paper, results from a numerical solver for the Helmholtz equation using the Finite Element M...
he flame response to upstream velocity perturbations is properly described by a Finite Impulse Respo...
This work concerns the prediction of potentially damaging thermoacoustic oscillations in gas turbine...
In this paper, we will present a fast prediction tool based on a one-dimensional Green's function ap...
The paper presents a numerical methodology for the prediction of the thermoacoustic instabilities wi...
This theoretical paper concerns the influence of the phase of the heat release response on thermoaco...
International audienceCombustion instabilities in a backward-facing step combustor are numerically s...
This paper presents four experimental methods for the evaluation of growth rates of combustion insta...
Thermoacoustic instabilities result from the interaction between acoustic pressure oscillations and ...