95
Views
40
CrossRef citations to date
0
Altmetric
Original Articles

Experimental Observation of Ordered States of Cellular Flames

, &
Pages 37-45 | Received 26 Mar 1993, Accepted 06 Jan 1994, Published online: 27 Apr 2007

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

Read on this site (1)

ALEXANDERA. KONNOV & IGORV. DYAKOV. (2007) EXPERIMENTAL STUDY OF ADIABATIC CELLULAR PREMIXED FLAMES OF METHANE (ETHANE, PROPANE) + OXYGEN + CARBON DIOXIDE MIXTURES. Combustion Science and Technology 179:4, pages 747-765.
Read now

Articles from other publishers (39)

Liqiao Jiang, Cheng Gu, Guangzhao Zhou, Fan Li & Qianlong Wang. (2020) Cellular instabilities of n-butane/air flat flames probing by PLIF-OH and PLIF-CH2O laser diagnosis. Experimental Thermal and Fluid Science 118, pages 110155.
Crossref
R.Kh. Abdrakhmanov, B.F. Boyarshinov & S.Yu. Fedorov. (2017) Investigation of the local parameters of a cellular propane/butane/air flame. International Journal of Heat and Mass Transfer 109, pages 1172-1180.
Crossref
Derek Michael Forrester. (2015) Arrays of coupled chemical oscillators. Scientific Reports 5:1.
Crossref
Martin Golubitsky & Ian Stewart. (2015) Recent advances in symmetric and network dynamics. Chaos: An Interdisciplinary Journal of Nonlinear Science 25:9.
Crossref
J.F. Yu, R. Yu, X.Q. Fan, M. Christensen, A.A. Konnov & X.S. Bai. (2013) Onset of cellular flame instability in adiabatic CH4/O2/CO2 and CH4/air laminar premixed flames stabilized on a flat-flame burner. Combustion and Flame 160:7, pages 1276-1286.
Crossref
Satoshi KADOWAKI, Takuya OSHIMA & Hideaki KOBAYASHI. (2013) Numerical Study on the Intrinsic Instability of High-Temperature Premixed Flames under the Conditions of Constant Density and Constant Pressure in the Unburned Gas. Journal of Fluid Science and Technology 8:3, pages 233-246.
Crossref
J. D. Kelley, G. H. Gunaratne, A. Palacios & J. Shulman. (2012) Modal decomposition and normal form for hydrodynamic flows: Examples from cellular flame patterns. The European Physical Journal Special Topics 204:1, pages 119-131.
Crossref
V. Ratna Kishore, M.R. Ravi & Anjan Ray. (2011) Adiabatic burning velocity and cellular flame characteristics of H2–CO–CO2–air mixtures. Combustion and Flame 158:11, pages 2149-2164.
Crossref
PETER BLOMGREN, JOAN MANUEL MARTINEZ & ANTONIO PALACIOS. (2011) INTERMITTENCY NEAR A CODIMENSION THREE STEADY-STATE BIFURCATION. International Journal of Bifurcation and Chaos 21:01, pages 287-304.
Crossref
M. Gorman, M. el-Hamdi & B. Pearson. (2009) The characteristics of four ratcheting states in cellular flames. Chaos: An Interdisciplinary Journal of Nonlinear Science 19:3.
Crossref
Peter Blomgren, Antonio Palacios & Scott Gasner. (2009) Recent advances in 2+1-dimensional simulations of the pattern-forming Kuramoto–Sivashinsky equation. Mathematics and Computers in Simulation 79:6, pages 1810-1823.
Crossref
Michael Gorman & Robert Brockman. (2009) Dynamic States of Heavy Hydrocarbon-Oxygen Premixed Flames on an Annular Burner. SIAM Journal on Applied Dynamical Systems 8:2, pages 676-688.
Crossref
SCOTT GASNER, PETER BLOMGREN & ANTONIO PALACIOS. (2011) NOISE-INDUCED INTERMITTENCY IN CELLULAR PATTERN-FORMING SYSTEMS. International Journal of Bifurcation and Chaos 17:08, pages 2765-2779.
Crossref
ANTONIO PALACIOS, PETER BLOMGREN & SCOTT GASNER. (2011) BIFURCATION ANALYSIS OF HOPPING BEHAVIOR IN CELLULAR PATTERN-FORMING SYSTEMS. International Journal of Bifurcation and Chaos 17:02, pages 509-520.
Crossref
Alexander A. Konnov & Igor V. Dyakov. (2005) Measurement of propagation speeds in adiabatic cellular premixed flames of CH4+O2+CO2. Experimental Thermal and Fluid Science 29:8, pages 901-907.
Crossref
Tamás Tél, Alessandro de Moura, Celso Grebogi & György Károlyi. (2005) Chemical and biological activity in open flows: A dynamical system approach. Physics Reports 413:2-3, pages 91-196.
Crossref
Peter Blomgren, Scott Gasner & Antonio Palacios. (2005) Hopping behavior in the Kuramoto–Sivashinsky equation. Chaos: An Interdisciplinary Journal of Nonlinear Science 15:1.
Crossref
Kay Robbins, Michael Gorman, Jill Bowers & Robert Brockman. (2004) Spiral dynamics of pulsating methane–oxygen flames on a circular burner. Chaos: An Interdisciplinary Journal of Nonlinear Science 14:2, pages 467-476.
Crossref
A.A Konnov & I.V Dyakov. (2004) Measurement of propagation speeds in adiabatic flat and cellular premixed flames of C2H6+O2+CO2. Combustion and Flame 136:3, pages 371-376.
Crossref
V. Panfilov, A. Bayliss & B.J. Matkowsky. (2003) Spiral flames. Applied Mathematics Letters 16:2, pages 131-135.
Crossref
C.B Muratov & V.V Osipov. (2001) Traveling spike autosolitons in the Gray–Scott model. Physica D: Nonlinear Phenomena 155:1-2, pages 112-131.
Crossref
Satoshi Kadowaki. (2001) Body-force effect on the lateral movement of cellular flames at low Lewis numbers. Physical Review E 63:2.
Crossref
Andrzej L. Kawczyński & Bartłomiej Legawiec. (2001) Coexistence of large amplitude stationary structures in a model of reaction-diffusion system. Physical Review E 63:2.
Crossref
C B Muratov & V V Osipov. (2000) Static spike autosolitons in the Gray-Scott model. Journal of Physics A: Mathematical and General 33:48, pages 8893-8916.
Crossref
C Degen, B Krauskopf, G Jennemann, I Fischer & W Elsäßer. (2000) Polarization selective symmetry breaking in the near-fields of vertical cavity surface emitting lasers. Journal of Optics B: Quantum and Semiclassical Optics 2:4, pages 517-525.
Crossref
Satoshi Kadowaki. (1999) The lateral movement of the three-dimensional cellular flame at low Lewis numbers. International Journal of Heat and Fluid Flow 20:6, pages 649-656.
Crossref
Antonio Palacios, Michael Gorman & Gemunu H. Gunaratne. (1999) Modal decomposition of hopping states in cellular flames. Chaos: An Interdisciplinary Journal of Nonlinear Science 9:3, pages 755-767.
Crossref
Michael Gorman. 1999. Pattern Formation in Continuous and Coupled Systems. Pattern Formation in Continuous and Coupled Systems 101 110 .
Alvin Bayliss, Andreas Class & Bernard J. Matkowsky. (1998) Localized Flickering Cellular Flames. SIAM Journal on Applied Mathematics 59:3, pages 942-964.
Crossref
K. A. Robbins & M. Gorman. (1998) Using image processing and computer animation to analyze spatial and temporal dynamics in a pattern-forming system. Computers in Physics 12:1, pages 73-81.
Crossref
Andreas G. Class. 1998. A Perspective Look at Nonlinear Media. A Perspective Look at Nonlinear Media 61 74 .
Roland Glowinski & Jiwen He. 1998. Computational Methods for Optimal Design and Control. Computational Methods for Optimal Design and Control 151 179 .
A. Bayliss & B.J. Matkowsky. (1996) Structure and dynamics of kink and cellular flames stabilized on a rotating burner. Physica D: Nonlinear Phenomena 99:2-3, pages 276-302.
Crossref
C. B. Muratov & V. V. Osipov. (1996) Scenarios of domain pattern formation in a reaction-diffusion system. Physical Review E 54:5, pages 4860-4879.
Crossref
Michael R. Carey, Stephen W. Morris & Paul Kolodner. (1996) Convective fingering of an autocatalytic reaction front. Physical Review E 53:6, pages 6012-6015.
Crossref
E. Stone, M. Gorman, M. el-Hamdi & K. A. Robbins. (1996) Identification of Intermittent Ordered Patterns as Heteroclinic Connections. Physical Review Letters 76:12, pages 2061-2064.
Crossref
M. Gorman, M. el-Hamdi, B. Pearson & K. A. Robbins. (1996) Ratcheting Motion of Concentric Rings in Cellular Flames. Physical Review Letters 76:2, pages 228-231.
Crossref
Dezső Horváth & Kenneth Showalter. (1995) Instabilities in propagating reaction-diffusion fronts of the iodate-arsenous acid reaction. The Journal of Chemical Physics 102:6, pages 2471-2478.
Crossref
A. Bayliss, B.J. Matkowsky & H. Riecke. (1994) Structure and dynamics of Modulated Traveling Waves in cellular flames. Physica D: Nonlinear Phenomena 74:1-2, pages 1-23.
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.