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Original Articles

Stagnation Point Heat Transfer from Turbulent Methane-Air Flames

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Pages 225-238 | Received 10 Oct 1982, Accepted 13 Apr 1983, Published online: 25 Apr 2007

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Read on this site (2)

C. E. BAUKAL & B. GEBHART. (1995) A Review of Flame Impingement Heat Transfer Studies Part 2: Measurements. Combustion Science and Technology 104:4-6, pages 359-385.
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C. E. BAUKAL & B. GEBHART. (1995) A Review of Flame Impingement Heat Transfer Studies Part 1: Experimental Conditions. Combustion Science and Technology 104:4-6, pages 339-357.
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Articles from other publishers (20)

Vinay C. Raj, Pramod Kuntikana, S. Sreedhara & S.V. Prabhu. (2018) Separation of heat transfer components from impinging methane diffusion flames. International Journal of Heat and Mass Transfer 126, pages 123-138.
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Charles Baukal Jr.. 2010. Industrial Combustion Testing. Industrial Combustion Testing.
G.K. Agrawal, Suman Chakraborty & S.K. Som. (2010) Heat transfer characteristics of premixed flame impinging upwards to plane surfaces inclined with the flame jet axis. International Journal of Heat and Mass Transfer 53:9-10, pages 1899-1907.
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Subhash Chander & Anjan Ray. (2008) An experimental and numerical study of stagnation point heat transfer for methane/air laminar flame impinging on a flat surface. International Journal of Heat and Mass Transfer 51:13-14, pages 3595-3607.
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L.L. Dong, C.S. Cheung & C.W. Leung. (2007) Heat transfer characteristics of an impinging inverse diffusion flame jet – Part I: Free flame structure. International Journal of Heat and Mass Transfer 50:25-26, pages 5108-5123.
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L.L. Dong, C.S. Cheung & C.W. Leung. (2007) Heat transfer characteristics of an impinging inverse diffusion flame jet. Part II: Impinging flame structure and impingement heat transfer. International Journal of Heat and Mass Transfer 50:25-26, pages 5124-5138.
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Subhash Chander & Anjan Ray. (2005) Flame impingement heat transfer: A review. Energy Conversion and Management 46:18-19, pages 2803-2837.
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Shuhn-Shyurng Hou & Yung-Chang Ko. (2005) Influence of oblique angle and heating height on flame structure, temperature field and efficiency of an impinging laminar jet flame. Energy Conversion and Management 46:6, pages 941-958.
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S.G. Tuttle, B.W. Webb & M.Q. McQuay. (2005) Convective heat transfer from a partially premixed impinging flame jet. Part II: Time-resolved results. International Journal of Heat and Mass Transfer 48:7, pages 1252-1266.
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Shuhn-Shyurng Hou & Yung-Chang Ko. (2004) Effects of heating height on flame appearance, temperature field and efficiency of an impinging laminar jet flame used in domestic gas stoves. Energy Conversion and Management 45:9-10, pages 1583-1595.
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L.L. Dong, C.W. Leung & C.S. Cheung. (2004) Heat transfer and wall pressure characteristics of a twin premixed butane/air flame jets. International Journal of Heat and Mass Transfer 47:3, pages 489-500.
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L.L Dong, C.S Cheung & C.W Leung. (2002) Heat transfer from an impinging premixed butane/air slot flame jet. International Journal of Heat and Mass Transfer 45:5, pages 979-992.
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C.E. BaukalJr.Jr. & B. Gebhart. (1996) A review of empirical flame impingement heat transfer correlations. International Journal of Heat and Fluid Flow 17:4, pages 386-396.
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W.M. Huang, S.R. Vosen & R. Greif. (1988) Heat transfer during laminar flame quenching: Effect of fuels. Symposium (International) on Combustion 21:1, pages 1853-1860.
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W. C. Strahle, R. K. Sigman & W. L. Meyer. (1987) Stagnating turbulent flows. AIAA Journal 25:8, pages 1071-1077.
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G.K. Hargrave, M. Fairweather & J.K. Kilham. (1987) Forced convective heat transfer from premixed flames. International Journal of Heat and Fluid Flow 8:1, pages 55-63.
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W. STRAHLE, R. SIGMAN & W. MEYER. (1986) Stagnating turbulent flows. Stagnating turbulent flows.
Bengt O. Enflo. (1985) The decay of the shock wave from a supersonic projectile. AIAA Journal 23:11, pages 1824-1826.
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Warren C. Strahle. (1985) Stagnation point flows with freestream turbulence - The matching condition. AIAA Journal 23:11, pages 1822-1824.
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G.K. Hargrave, M. Fairweather & J.K. Kilham. (1985) Turbulence enhancement of stagnation point heat transfer on a body of revolution. International Journal of Heat and Fluid Flow 6:2, pages 91-98.
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