527
Views
23
CrossRef citations to date
0
Altmetric
Original Articles

Nonlinear Instability Analysis for Partially Premixed Swirl Flames

, &
Pages 713-736 | Received 04 Sep 2013, Accepted 13 Dec 2013, Published online: 20 May 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

G. Vignat, D. Durox, T. Schuller & S. Candel. (2020) Combustion Dynamics of Annular Systems. Combustion Science and Technology 192:7, pages 1358-1388.
Read now
Dmytro Iurashev, Giovanni Campa, Vyacheslav V. Anisimov & Ezio Cosatto. (2017) Three-step approach for prediction of limit cycle pressure oscillations in combustion chambers of gas turbines. Combustion Theory and Modelling 21:6, pages 1148-1175.
Read now
Stefan Wysocki, Giacomo Di-Chiaro & Fernando Biagioli. (2015) Effect of fuel mixture fraction and velocity perturbations on the flame transfer function of swirl stabilized flames. Combustion Theory and Modelling 19:6, pages 714-743.
Read now

Articles from other publishers (20)

Xiangdong Deng, Baolu Shi, Yong Tang & Ningfei Wang. (2023) The Linear Stability of Liquid Film with Oscillatory Gas Velocity. Aerospace 10:8, pages 691.
Crossref
Jacqueline O’Connor. (2023) Understanding the role of flow dynamics in thermoacoustic combustion instability. Proceedings of the Combustion Institute 39:4, pages 4583-4610.
Crossref
Deanna A. Lacoste. (2023) Flames with plasmas. Proceedings of the Combustion Institute 39:4, pages 5405-5428.
Crossref
Tryambak Gangopadhyay, Vikram Ramanan, Adedotun Akintayo, Paige K Boor, Soumalya Sarkar, Satyanarayanan R Chakravarthy & Soumik Sarkar. (2021) 3D convolutional selective autoencoder for instability detection in combustion systems. Energy and AI 4, pages 100067.
Crossref
Giacomo Bonciolini, Abel Faure-Beaulieu, Claire Bourquard & Nicolas Noiray. (2021) Low order modelling of thermoacoustic instabilities and intermittency: Flame response delay and nonlinearity. Combustion and Flame 226, pages 396-411.
Crossref
R. Gaudron, M. Gatti, C. Mirat & T. Schuller. (2019) Impact of the Acoustic Forcing Level on the Transfer Matrix of a Turbulent Swirling Combustor with and Without Flame. Flow, Turbulence and Combustion 103:3, pages 751-771.
Crossref
R. Gaudron, M. Gatti, C. Mirat & T. Schuller. (2019) Flame Describing Functions of a Confined Premixed Swirled Combustor With Upstream and Downstream Forcing. Journal of Engineering for Gas Turbines and Power 141:5.
Crossref
Sreenath M Gopinathan, Dmytro Iurashev, Alessandra Bigongiari & Maria Heckl. (2017) Nonlinear analytical flame models with amplitude-dependent time-lag distributions. International Journal of Spray and Combustion Dynamics 10:4, pages 264-276.
Crossref
Matthew P. JuniperR.I. Sujith. (2018) Sensitivity and Nonlinearity of Thermoacoustic Oscillations. Annual Review of Fluid Mechanics 50:1, pages 661-689.
Crossref
Giulio Ghirardo, Matthew P. Juniper & Mirko R. Bothien. (2018) The effect of the flame phase on thermoacoustic instabilities. Combustion and Flame 187, pages 165-184.
Crossref
Sina Kheirkhah, J. D. Maxim Cirtwill, Pankaj Saini, Krishna Venkatesan & Adam M. Steinberg. (2017) Dynamics and mechanisms of pressure, heat release rate, and fuel spray coupling during intermittent thermoacoustic oscillations in a model aeronautical combustor at elevated pressure. Combustion and Flame 185, pages 319-334.
Crossref
Dmytro Iurashev, Giovanni Campa, Vyacheslav V. Anisimov, Ezio Cosatto, Luca Rofi & Edoardo Bertolotto. (2017) Application of a three-step approach for prediction of combustion instabilities in industrial gas turbine burners. Journal of the Global Power and Propulsion Society 1, pages JCW78T.
Crossref
G. Ghirardo, M. P. Juniper & J. P. Moeck. (2016) Weakly nonlinear analysis of thermoacoustic instabilities in annular combustors. Journal of Fluid Mechanics 805, pages 52-87.
Crossref
Myung-Gon Yoon, Jina Kim & Deasik Kim. (2016) A Flame Transfer Function with Nonlinear Phase. Journal of the Korean Society of Propulsion Engineers 20:3, pages 78-86.
Crossref
Anna-Maria Kypraiou, Nicholas Worth & Epaminondas Mastorakos. (2016) Experimental Investigation of the Response of Premixed and Non-premixed Turbulent Flames to Acoustic Forcing. Experimental Investigation of the Response of Premixed and Non-premixed Turbulent Flames to Acoustic Forcing.
Giulio Ghirardo, Bernhard Ćosić, Matthew P. Juniper & Jonas P. Moeck. (2015) State-space realization of a describing function. Nonlinear Dynamics 82:1-2, pages 9-28.
Crossref
Bernhard Ćosić, Steffen Terhaar, Jonas P. Moeck & Christian Oliver Paschereit. (2015) Response of a swirl-stabilized flame to simultaneous perturbations in equivalence ratio and velocity at high oscillation amplitudes. Combustion and Flame 162:4, pages 1046-1062.
Crossref
C. Mirat, D. Durox & T. Schuller. (2015) Stability analysis of a swirl spray combustor based on flame describing function. Proceedings of the Combustion Institute 35:3, pages 3291-3298.
Crossref
B. ?osi?, D. Wassmer, S. Terhaar & C.O. Paschereit. (2015) Acoustic response of Helmholtz dampers in the presence of hot grazing flow. Journal of Sound and Vibration 335, pages 1-18.
Crossref
Christian Oliver PASCHEREIT, Steffen TERHAAR, Bernhard ĆOSIĆ & Kilian OBERLEITHNER. (2014) Application of linear hydrodynamic stability analysis to reacting swirling combustor flows. Journal of Fluid Science and Technology 9:3, pages JFST0024-JFST0024.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.