Nonlinear/chaotic behaviour in thermo-acoustic instability
From MaRDI portal
Publication:3638546
DOI10.1080/13647830902957218zbMath1176.80082OpenAlexW1974261652MaRDI QIDQ3638546
Publication date: 27 October 2009
Published in: Combustion Theory and Modelling (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/13647830902957218
Hydro- and aero-acoustics (76Q05) Combustion (80A25) Strange attractors, chaotic dynamics of systems with hyperbolic behavior (37D45) Liquid-gas two-phase flows, bubbly flows (76T10) Dynamical aspects of attractors and their bifurcations (37G35)
Related Items (9)
Minimal energy thresholds for triggering in the Rijke tube: the effect of the time delay ⋮ Nonlinear/chaotic analysis, modelling and control of combustion instabilities due to vaporizing sprays ⋮ Intermittency route to self-excited chaotic thermoacoustic oscillations ⋮ Nonlinear self-excited thermoacoustic oscillations: intermittency and flame blowout ⋮ Subcritical bifurcation and bistability in thermoacoustic systems ⋮ NONLINEAR/CHAOTIC MODELING AND CONTROL OF COMBUSTION INSTABILITIES ⋮ Chaotic modelling and control of combustion instabilities due to vaporization ⋮ Thermoacoustic instability as mutual synchronization between the acoustic field of the confinement and turbulent reactive flow ⋮ Experimental investigation on critical slowing down of premixed combustion in a backward-facing step combustor
Cites Work
- Unnamed Item
- New algorithms for the evaluation of complex bifurcation points in ordinary differential equations. A comparative numerical study
- Practical bifurcation and stability analysis: from equilibrium to chaos.
- Numerical Computation of Hopf Bifurcation Points for Parabolic Diffusion-Reaction Differential Equations
- The Calculation of Hopf Points by a Direct Method
- Nonlinear behavior of acoustic waves in combustion chambers—I
- Some recent results for nonlinear acoustics in combustion chambers
- ANALYSIS OF A BLOOD CELL POPULATION MODEL
This page was built for publication: Nonlinear/chaotic behaviour in thermo-acoustic instability