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Original Articles

EXTENSION OF THE HEAT FLUX METHOD TO SUBATMOSPHERIC PRESSURES

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Pages 1537-1564 | Received 01 Nov 2003, Accepted 01 Mar 2004, Published online: 11 Aug 2010

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

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Hernando Alexander Yepes, Arley Cardona Vargas & Andrés Amell Arrieta. (2022) Kinetic study of the effect of sub-atmospheric conditions on the laminar burning velocity of high C2H6 content natural gas mixtures. Combustion Theory and Modelling 26:2, pages 338-364.
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Vladimir A. Alekseev, Jenny D. Naucler, Moah Christensen, Elna J. K. Nilsson, Evgeniy N. Volkov, L. Philipus H. de Goey & Alexander A. Konnov. (2016) Experimental Uncertainties of the Heat Flux Method for Measuring Burning Velocities. Combustion Science and Technology 188:6, pages 853-894.
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Articles from other publishers (19)

Xiao Yang, Jianmin Gao, Xurong Huang, Jingchuan Cao, Qian Du, Shaohua Wu & Yukun Qin. (2023) Effects of pressure on laminar flame characteristics of C1-C3 alkanes: A review. Fuel Processing Technology 240, pages 107561.
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Christopher B. Reuter & Timothy M. Ombrello. (2020) Ozone-Enhanced Flame Propagation of Methane/Ethylene/Air Mixtures at Subatmospheric Pressures. Journal of Propulsion and Power 36:6, pages 931-939.
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Christopher B. Reuter & Timothy Ombrello. (2020) Ozone-Enhanced Flame Propagation of Alkane/Alkene/Air Mixtures. Ozone-Enhanced Flame Propagation of Alkane/Alkene/Air Mixtures.
E. J. K. Nilsson, T. Hurtig, A. Ehn & C. Fureby. (2019) A setup for studies of laminar flame under microwave irradiation. Review of Scientific Instruments 90:11.
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Alexander A. Konnov, Akram Mohammad, Velamati Ratna Kishore, Nam Il Kim, Chockalingam Prathap & Sudarshan Kumar. (2018) A comprehensive review of measurements and data analysis of laminar burning velocities for various fuel+air mixtures. Progress in Energy and Combustion Science 68, pages 197-267.
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Michael R. Rhoby & Timothy Ombrello. (2018) Exploration of adiabatic flow assumption of a sub-atmospheric flame using narrow-band infrared imaging measurements. Exploration of adiabatic flow assumption of a sub-atmospheric flame using narrow-band infrared imaging measurements.
B. Lefort, A. El Bakali, L. Gasnot & J.F. Pauwels. (2017) Experimental and numerical investigation of low-pressure laminar premixed synthetic natural gas flames in rich conditions. Fuel 189, pages 210-237.
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Vladimir A. Alekseev, Moah Christensen, Edouard Berrocal, Elna J.K. Nilsson & Alexander A. Konnov. (2015) Laminar premixed flat non-stretched lean flames of hydrogen in air. Combustion and Flame 162:10, pages 4063-4074.
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Erica Belmont, Timothy Ombrello, Michael Brown, Campbell Carter & Janet Ellzey. (2015) Experimental and numerical investigation of freely propagating flames stabilized on a Hencken Burner. Combustion and Flame 162:6, pages 2679-2685.
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Marco Mehl, Olivier Herbinet, Patricia Dirrenberger, Roda Bounaceur, Pierre-Alexandre Glaude, Frédérique Battin-Leclerc & William J. Pitz. (2015) Experimental and modeling study of burning velocities for alkyl aromatic components relevant to diesel fuels. Proceedings of the Combustion Institute 35:1, pages 341-348.
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A.A. Konnov, R. Riemeijer, V.N. Kornilov & L.P.H. de Goey. (2013) 2D effects in laminar premixed flames stabilized on a flat flame burner. Experimental Thermal and Fluid Science 47, pages 213-223.
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Timothy Ombrello, Campbell Carter, Matthew Pinchak, Ephraim Gutmark & Viswanath Katta. (2013) Weakly Stretched Methane-Air Laminar Flame Speeds and the Non-Linear Extrapolation to Zero Stretch. Weakly Stretched Methane-Air Laminar Flame Speeds and the Non-Linear Extrapolation to Zero Stretch.
Elna J. K. Nilsson & Alexander A. Konnov. 2013. Cleaner Combustion. Cleaner Combustion 231 280 .
Timothy Ombrello, Campbell Carter & Viswanath Katta. (2012) Burner platform for sub-atmospheric pressure flame studies. Combustion and Flame 159:7, pages 2363-2373.
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A.V. Sepman, A.V. Mokhov & H.B. Levinsky. (2011) Extending the predictions of chemical mechanisms for hydrogen combustion: Comparison of predicted and measured flame temperatures in burner-stabilized, 1-D flames. International Journal of Hydrogen Energy 36:15, pages 9298-9303.
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Hugo J. Burbano, Jhon Pareja & Andrés A. Amell. (2011) Laminar burning velocities and flame stability analysis of syngas mixtures at sub-atmospheric pressures. International Journal of Hydrogen Energy 36:4, pages 3243-3252.
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Timothy Ombrello, Campbell Carter & Viswanath Katta. (2011) Burner Platform for Sub-Atmospheric Pressure Flame Studies. Burner Platform for Sub-Atmospheric Pressure Flame Studies.
A.A. Konnov, R. Riemeijer & L.P.H. de Goey. (2010) Adiabatic laminar burning velocities of CH4+H2+air flames at low pressures. Fuel 89:7, pages 1392-1396.
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R.T.E. Hermanns, A.A. Konnov, R.J.M. Bastiaans, L.P.H. de Goey, K. Lucka & H. Köhne. (2010) Effects of temperature and composition on the laminar burning velocity of CH4+ H2+ O2+ N2 flames. Fuel 89:1, pages 114-121.
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