A real-time digital twin of azimuthal thermoacoustic instabilities
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Publication:6661481
DOI10.1017/jfm.2024.1052MaRDI QIDQ6661481
Nicolas Noiray, Luca Magri, James R. Dawson, Andrea Nóvoa
Publication date: 13 January 2025
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Cites Work
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- Stability analysis of thermo-acoustic nonlinear eigenproblems in annular combustors. Part I. Sensitivity
- Stability analysis of thermo-acoustic nonlinear eigenproblems in annular combustors. Part II. Uncertainty quantification
- Analysis of data sets of stochastic systems
- Echo state networks are universal
- Combined state and parameter estimation in level-set methods
- State estimation in wall-bounded flow systems. Part 3. The ensemble Kalman filter
- Investigation of azimuthal staging concepts in annular gas turbines
- FEEDBACK CONTROL OF COMBUSTION OSCILLATIONS
- Separate bias Kalman estimator with bias state noise
- Neural Networks and Deep Learning
- Sensitivity and Nonlinearity of Thermoacoustic Oscillations
- Inverse Problem Theory and Methods for Model Parameter Estimation
- Unsteady Combustor Physics
- Imperfect symmetry of real annular combustors: beating thermoacoustic modes and heteroclinic orbits
- Flow state estimation in the presence of discretization errors
- Sensitivity of the Rayleigh criterion in thermoacoustics
- Spontaneous and explicit symmetry breaking of thermoacoustic eigenmodes in imperfect annular geometries
- Real-time thermoacoustic data assimilation
- Degenerate perturbation theory in thermoacoustics: high-order sensitivities and exceptional points
- Analysis of degenerate mechanisms triggering finite-amplitude thermo-acoustic oscillations in annular combustors
- Filtering Complex Turbulent Systems
- Robust optimization and validation of echo state networks for learning chaotic dynamics
- Inferring unknown unknowns: regularized bias-aware ensemble Kalman filter
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