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Original Articles

Stabilization process of a lifted flame tuned by acoustic excitation

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Pages 87-110 | Published online: 17 Sep 2010

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Read on this site (6)

Naoki Kurimoto, Yu Saiki, Kristian Angele, Yuji Suzuki & Nobuhide Kasagi. (2015) Active control of coaxial jet mixing with manipulation of primary vortical structures by arrayed micro flap actuators. Journal of Turbulence 16:5, pages 411-441.
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S.S. Abdurakipov, V.M. Dulin, D.M. Markovich & K. Hanjalic. (2013) Expanding the Stability Range of a Lifted Propane Flame by Resonant Acoustic Excitation. Combustion Science and Technology 185:11, pages 1644-1666.
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G. Chiranjeevi Vidyasagar, Vasudevan Raghavan & K. Srinivasan. (2011) The Effect of Upstream Annular Cavities in Circular Jet Burners on Stability Characteristics of Jet Diffusion Flames. Combustion Science and Technology 183:6, pages 614-626.
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N. J. Moore & K. M. Lyons. (2010) Leading-Edge Flame Fluctuations in Lifted Turbulent Flames. Combustion Science and Technology 182:7, pages 777-793.
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FRANÇOISE BAILLOT & DAVID DEMARE. (2007) RESPONSES OF A LIFTED NON-PREMIXED FLAME TO ACOUSTIC FORCING. PART 2. Combustion Science and Technology 179:5, pages 905-932.
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R. E. EL BEHERY, A. A. MOHAMAD & M. M. KAMAL. (2005) COMBUSTION ENHANCEMENT OF A GAS FLARE USING ACOUSTICAL EXCITATION. Combustion Science and Technology 177:9, pages 1627-1659.
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Articles from other publishers (24)

Agnieszka Wawrzak, Karol Wawrzak, Andrzej Boguslawski, Artur Tyliszczak & Bernard J. Geurts. (2023) Global instability phenomenon as a physical mechanism controlling dynamics of a nitrogen-diluted hydrogen flame. International Journal of Heat and Mass Transfer 213, pages 124260.
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Artur Tyliszczak & Agnieszka Wawrzak. (2022) A numerical study of a lifted $$\hbox {H}_2/\hbox {N}_2$$ flame excited by an axial and flapping forcing. Scientific Reports 12:1.
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Artur Tyliszczak, Lukasz Kuban & Jakub Stempka. (2022) Numerical analysis of non-excited and excited jets issuing from non-circular nozzles. International Journal of Heat and Fluid Flow 94, pages 108944.
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Hyun Jong Ahn, Yun Hyeong Kang & Jeong Soo Kim. (2020) Effects of Ultrasonic Standing Wave on the Ultrasonically-atomized Aerosol Flame Injected through a Slit-jet Nozzle. Journal of the Korean Society of Propulsion Engineers 24:6, pages 53-60.
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Ching Min Hsu, Farha Khan & Dickson Bwana Mosiria. (2020) Effects of Pulsation Intensities on Flame Characteristics of a Small Backward-Inclined Jet Flame in Crossflow. Journal of Thermal Science and Engineering Applications 12:2.
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Omid Ali Zargar, Rong Fung Huang & Ching Min Hsu. (2019) Flames of Swirling Double-Concentric Jets Subject to Acoustic Excitation at Resonance. Journal of Thermal Science and Engineering Applications 11:3.
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Omid Ali Zargar, Rong Fung Huang & Ching Min Hsu. (2019) Effect of acoustic excitation on flames of swirling dual-disk double-concentric jets. Experimental Thermal and Fluid Science 100, pages 337-348.
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Artur Tyliszczak. (2018) Parametric study of multi-armed jets. International Journal of Heat and Fluid Flow 73, pages 82-100.
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Richard Kyalo Kimilu, Rong Fung Huang & Ching Min Hsu. (2017) Non-Premixed Burner-Attached Jet Flames in Crossflow Pulsed at Resonance Frequency. Journal of Propulsion and Power 33:6, pages 1332-1350.
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Artur Tyliszczak. (2015) LES–CMC study of an excited hydrogen flame. Combustion and Flame 162:10, pages 3864-3883.
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Michael Estela LoreteroRong Fung Huang. (2013) Effects of Acoustic Excitation and Annular Swirl Strength on a Non-Premixed and Swirl-Stabilized Flame. Journal of Energy Engineering 139:4, pages 329-337.
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AM Ismael, MF Abdelkhalek & MM Kamal. (2013) Combustion performance of eccentrically rotated flames. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 227:5, pages 593-611.
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Y. Saiki, N. Kurimoto, Y. Suzuki & N. Kasagi. (2011) Active control of jet premixed flames in a model combustor with manipulation of large-scale vortical structures and mixing. Combustion and Flame 158:7, pages 1391-1403.
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Tzu-Wei Chang & Yei-Chin Chao. (2011) The stabilization characteristics of turbulent lifted diffusion flames of CH4/CO blended fuels. Proceedings of the Combustion Institute 33:1, pages 1655-1662.
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Michael E. LoreteroRong F. Huang. (2010) Effects of Acoustic Excitation on a Swirling Diffusion Flame. Journal of Engineering for Gas Turbines and Power 132:12.
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M. E. Loretero & R. F. Huang. (2011) Behaviors of Flame and Flow of Swirling Wake During Fuel Jet Oscillation Due to Acoustic Excitations. Journal of Mechanics 26:3, pages 279-286.
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Wei-Hsin Chen, Tin-Wei Chiu, Chen-I Hung & Mu-Rong Lin. (2009) Hysteresis and reaction characterization of methane catalytic partial oxidation on rhodium catalyst. Journal of Power Sources 194:1, pages 467-477.
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C.J. Lawn. (2009) Lifted flames on fuel jets in co-flowing air. Progress in Energy and Combustion Science 35:1, pages 1-30.
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Kevin M. Lyons. (2007) Toward an understanding of the stabilization mechanisms of lifted turbulent jet flames: Experiments. Progress in Energy and Combustion Science 33:2, pages 211-231.
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Guillaume Pinguet & Dany Escudié. (2007) Experimental study of the stabilization process of a non-premixed flame via the destabilization analysis of the blue ring flame. Experimental Thermal and Fluid Science 31:5, pages 453-460.
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Yuji Yahagi, M. Sekiguti & Kenjiro Suzuki. (2007) Flow structure and flame stability in a micro can combustor with a baffle plate. Applied Thermal Engineering 27:4, pages 788-794.
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Chih-Yung Wu, Yei-Chin Chao, Tsarng-Sheng Cheng, Yueh-Heng Li, Kuo-Yuan Lee & Tony Yuan. (2006) The blowout mechanism of turbulent jet diffusion flames. Combustion and Flame 145:3, pages 481-494.
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N. Kurimoto, Y. Suzuki & N. Kasagi. (2005) Active control of lifted diffusion flames with arrayed micro actuators. Experiments in Fluids 39:6, pages 995-1008.
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D. Demare & F. Baillot. (2004) Acoustic enhancement of combustion in lifted nonpremixed jet flames. Combustion and Flame 139:4, pages 312-328.
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