225
Views
44
CrossRef citations to date
0
Altmetric
Original Articles

Premixed flames modelled with thermally sensitive intermediate branching kinetics

Pages 909-948 | Received 28 Oct 2006, Accepted 15 Feb 2007, Published online: 23 Nov 2007

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

Read on this site (14)

Su Ryong Lee & Jong Soo Kim. (2023) The Asymptotic Structure of Strained Chain-Branching Premixed Flames. Combustion Science and Technology 195:15, pages 3638-3662.
Read now
Qiang Li, Chang Shu & Huangwei Zhang. (2022) On the evolution of fuel droplet evaporation zone and its interaction with flame front in ignition of spray flames. Combustion Theory and Modelling 26:7, pages 1131-1158.
Read now
Su Ryong Lee & Jong Soo Kim. (2022) The Asymptotic Structure of Strained Chain-Branching Premixed Flames with Nonunity Lewis Numbers and Their Extinction. Combustion Science and Technology 0:0, pages 1-30.
Read now
Haiyue Li, Huangwei Zhang & Zheng Chen. (2019) Effects of endothermic chain-branching reaction on spherical flame initiation and propagation. Combustion Theory and Modelling 23:3, pages 496-514.
Read now
Vladimir V. Gubernov, Valeri I. Babushok & Sergei S. Minaev. (2019) Phenomenological model of chain-branching premixed flames. Combustion Theory and Modelling 23:2, pages 261-278.
Read now
Huangwei Zhang & Zheng Chen. (2018) Bifurcation and extinction limit of stretched premixed flames with chain-branching intermediate kinetics and radiative loss. Combustion Theory and Modelling 22:3, pages 531-553.
Read now
Valeri I. Babushok, Vladimir V. Gubernov, Sergei S. Minaev & Taisia P. Miroshnichenko. (2017) Simple model of inhibition of chain-branching combustion processes. Combustion Theory and Modelling 21:6, pages 1066-1079.
Read now
Daniel Fernández-Galisteo, Carmen Jiménez, Mario Sánchez-Sanz & Vadim N. Kurdyumov. (2014) The differential diffusion effect of the intermediate species on the stability of premixed flames propagating in microchannels. Combustion Theory and Modelling 18:4-5, pages 582-605.
Read now
Huangwei Zhang & Zheng Chen. (2013) Effects of heat conduction and radical quenching on premixed stagnation flame stabilised by a wall. Combustion Theory and Modelling 17:4, pages 682-706.
Read now
Huangwei Zhang, Peng Guo & Zheng Chen. (2013) Outwardly Propagating Spherical Flames with Thermally Sensitive Intermediate Kinetics and Radiative Loss. Combustion Science and Technology 185:2, pages 226-248.
Read now
V.V. Gubernov, A.V. Kolobov, A.A. Polezhaev & H.S. Sidhu. (2011) Oscillatory thermal-diffusive instability of combustion waves in a model with chain-branching reaction and heat loss. Combustion Theory and Modelling 15:3, pages 385-407.
Read now
J.B. Greenberg, A. Zinoviev & J.W. Dold. (2009) Laminar premixed spray flame analysis with thermally sensitive intermediate kinetics. Combustion Theory and Modelling 13:2, pages 365-388.
Read now
V.V. Gubernov, H.S. Sidhu & G.N. Mercer. (2008) Combustion waves in a model with chain branching reaction and their stability. Combustion Theory and Modelling 12:3, pages 407-431.
Read now

Articles from other publishers (30)

Javier Bosch, Daniel Fernández-Galisteo, Carmen Jiménez & Vadim N. Kurdyumov. (2024) Small-scale superadiabatic combustors with a two-step chain-branching chemistry model: Asymptotic models and the effect of two-dimensionality on lean mixtures burning. Combustion and Flame 259, pages 113127.
Crossref
Javier Bosch, Daniel Fernández-Galisteo, Carmen Jiménez & Vadim N. Kurdyumov. (2023) Superadiabatic small-scale combustors: Asymptotic analysis of a two-step chain-branching combustion model. Proceedings of the Combustion Institute 39:2, pages 1927-1935.
Crossref
Marc Le Boursicaud, Luis A. Carbajal-Carrasco, Zakaria Bouali & Arnaud Mura. (2022) Optimized two-step (OTS) chemistry model for the description of partially premixed combustion. Combustion and Flame 245, pages 112287.
Crossref
Dounia Omar, Thomas Jaravel & Olivier Vermorel. (2022) On the controlling parameters of the thermal decomposition of inhibiting particles: A theoretical and numerical study. Combustion and Flame 240, pages 111991.
Crossref
Javier Bosch, Daniel Fernández-Galisteo, Carmen Jiménez & Vadim N. Kurdyumov. (2022) Analytical study of superadiabatic small-scale combustors with a two-step chain-branching chemistry model: Lean burning below the flammability limit. Combustion and Flame 235, pages 111731.
Crossref
Luis A. Carbajal-Carrasco, Zakaria Bouali & Arnaud Mura. (2021) Optimized single-step (OSS) chemistry for auto-ignition of heterogeneous mixtures. Combustion and Flame 227, pages 11-26.
Crossref
Zongming Yu, Yuhua Ai, Yue Wang & Chuanzhi Luo. (2021) Thermoacoustic instability analysis of a laminar lean premixed flame under autoignitive conditions. Combustion and Flame 225, pages 513-523.
Crossref
Qiang Li, Huangwei Zhang & Chang Shu. (2020) Propagation of weakly stretched premixed spherical spray flames in localized homogeneous and heterogeneous reactants. Physics of Fluids 32:12.
Crossref
Aimad Er-raiy, Zakaria Bouali, Julien Réveillon & Arnaud Mura. (2018) Optimized single-step (OSS) chemistry models for the simulation of turbulent premixed flame propagation. Combustion and Flame 192, pages 130-148.
Crossref
Daniel C. Murphy, Mario Sánchez-Sanz & Carlos Fernandez-Pello. (2017) The role of non-thermal electrons in flame acceleration. Combustion and Flame 182, pages 48-57.
Crossref
Irina Brailovsky, Peter V. Gordon, Leonid Kagan & Gregory Sivashinsky. (2015) Diffusive-thermal instabilities in premixed flames: Stepwise ignition-temperature kinetics. Combustion and Flame 162:5, pages 2077-2086.
Crossref
Mario Sánchez-Sanz, Daniel C. Murphy & C. Fernandez-Pello. (2015) Effect of an external electric field on the propagation velocity of premixed flames. Proceedings of the Combustion Institute 35:3, pages 3463-3470.
Crossref
Cong Li, Yunchao Wu & Zheng Chen. (2014) Effects of reaction reversibility on ignition and flame propagation. Journal of Mathematical Chemistry 53:1, pages 386-401.
Crossref
Ruiqin Shan & Tianfeng Lu. (2014) A bifurcation analysis for limit flame phenomena of DME/air in perfectly stirred reactors. Combustion and Flame 161:7, pages 1716-1723.
Crossref
Antonio L. Sánchez & Forman A. Williams. (2014) Recent advances in understanding of flammability characteristics of hydrogen. Progress in Energy and Combustion Science 41, pages 1-55.
Crossref
Bin Bai, Zheng Chen, Huangwei Zhang & Shiyi Chen. (2013) Flame propagation in a tube with wall quenching of radicals. Combustion and Flame 160:12, pages 2810-2819.
Crossref
Vladimir V. Gubernov, Andrei V. Kolobov, Andrei A. Polezhaev & Harvinder S. Sidhu. (2013) Analysing the stability of premixed rich hydrogen–air flame with the use of two-step models. Combustion and Flame 160:6, pages 1060-1069.
Crossref
Huangwei Zhang, Peng Guo & Zheng Chen. (2013) Critical condition for the ignition of reactant mixture by radical deposition. Proceedings of the Combustion Institute 34:2, pages 3267-3275.
Crossref
Vadim N. Kurdyumov & Daniel Fernández-Galisteo. (2012) Asymptotic structure of premixed flames for a simple chain-branching chemistry model with finite activation energy near the flammability limit. Combustion and Flame 159:10, pages 3110-3118.
Crossref
Vladimir V. Gubernov, Andrei V. Kolobov, Andrei A. Polezhaev & Harvinder S. Sidhu. (2012) Stability of combustion waves in the Zeldovich–Liñán model. Combustion and Flame 159:3, pages 1185-1196.
Crossref
Paul Clavin & José C. Graña-Otero. (2011) Curved and stretched flames: the two Markstein numbers. Journal of Fluid Mechanics 686, pages 187-217.
Crossref
Huangwei Zhang & Zheng Chen. (2011) Spherical flame initiation and propagation with thermally sensitive intermediate kinetics. Combustion and Flame 158:8, pages 1520-1531.
Crossref
G.J. Sharpe & S.A.E.G. Falle. (2011) Numerical simulations of premixed flame cellular instability for a simple chain-branching model. Combustion and Flame 158:5, pages 925-934.
Crossref
V. V. Gubernov, A. V. Kolobov, A. A. Polezhaev & H. S. Sidhu. (2011) Pulsating instabilities in the Zeldovich–Liñán model. Journal of Mathematical Chemistry 49:5, pages 1054-1070.
Crossref
Vladimir Gubernov, Andrei Kolobov, Andrei Polezhaev, Harvinder Sidhu & Geoffry Mercer. (2010) Period doubling and chaotic transient in a model of chain-branching combustion wave propagation. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 466:2121, pages 2747-2769.
Crossref
G. Dumazer, C. Antoine, A. Lemarchand & B. Nowakowski. (2009) Steady dynamics of exothermic chemical wave fronts in van der Waals fluids. Physical Review E 80:6.
Crossref
V. V. Gubernov, A. V. Kolobov & A. A. Polezhaev. (2009) Pulsating regimes of flames propagation in a model with chain-branching reaction. Computer Research and Modeling 1:3, pages 273-280.
Crossref
V. V. GUBERNOV, A. V. KOLOBOV, A. A. POLEZHAEV, H. S. SIDHU & G. N. MERCER. (2011) PULSATING INSTABILITIES OF COMBUSTION WAVES IN A CHAIN-BRANCHING REACTION MODEL. International Journal of Bifurcation and Chaos 19:03, pages 873-887.
Crossref
Gary J. Sharpe. (2009) Thermal-Diffusive Instability of Premixed Flames for a Simple Chain-Branching Chemistry Model with Finite Activation Energy. SIAM Journal on Applied Mathematics 70:3, pages 866-884.
Crossref
V. V. Gubernov, H. S. Sidhu, G. N. Mercer, A. V. Kolobov & A. A. Polezhaev. (2008) The effect of Lewis number variation on combustion waves in a model with chain-branching reaction. Journal of Mathematical Chemistry 44:3, pages 816-830.
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.