Di Blasi, C. “Ignition and Flame Spread Across Solid Fuels,” Prog. Astro. Aero. 35, Oran and Boris (Eds.) (1991) 643-671. | |
Mell, W. E.; and Kashiwagi, T. “Dimensional Effects on the Transition from Ignition to Flame Spread in Microgravity,” Proc. Combust. Inst., 27 (1998) 2635-2641. CrossRef | |
Kazuyoshi Nakabe, Howard R. Baum, and Takashi Knshiwagi, “Ignition And Subsequent Flame Spread Over a Thin Cellulosic Material”, 2nd International Microgravity Combustion Workshop, 167-179 pp, 1992 | |
Robert A. Altenkirch, Lin tang, Kurt Sacksteder, Subrata Bhattacharjee and Michael A Delichatsios, “Inherently Unsteady Flame Spread To Extinction Over Thick Fuels in Microgravity”, Twenty-Seventh Symposium (International) on Combustion/The Combustion Institute, pp. 2515-2524, 1998. | |
Takahashi Shuhei, Wakai Kazunori, Paolini Chris and Bhattacharjee Subrata, “Transition between Concurrent and Opposed Flow Flame Spread over Thin Films of PMMA in a Microgravity Environment”, Proceedings of Thermal Engineering Conference (2005). | |
Ferkul.P.V, A Model of Concurrent Flow Flame Spread Over Thin Solid Fuel, Ph.D.Dissertation, Case Western Reserve University, Cleveland,OH,(1993). | |
Jiang.C.B, A Model of Flame Spread over a Thin Solid in Concurrent Flow with Flame Radiation, Ph.D.Dissertation, Case Western Reserve University, Cleveland, Oh(1995). | |
Shih.H.Y and T'ien.J.S, Modelling Concurrent Flame spread Over a thin Solid in Low-Speed Flow Tunnel, Proc.Combust.Inst., 28,(2000),2777. CrossRef | |
Smooke.M.D and Giovangigli.V, Formulation of the Premixed and Nonpremixed Test Problem, lecture Notes in Physics, Series 384, Chapter 1 ,Spring-Verlag, New York, 1991. | |
Hoffman .Z, Gas Dynamics, John Wiley & Sons Inc., New York, 1976. | |
Lefebvre.A.H, Gas Turbine Combustion, McGraw Hill Inc., New York, 1983. | |
Grayson.G, Sacksteder,.K.R, Ferkul.P.V.and T'ien. James. S, Microgravity sci. Tech. 7(2) (1994) 187-193. | |
Di Blasi.C, Prediction of Wind-opposed Flame Spread Rates and Energy Feedback Analysis for Charring Solids in a Microgravity Environment, Combust. Flame, 100:332-340(1995). CrossRef | |
Bhattacharjee.S and Altenkirch.R.A, Radiation Controlled, Opposed-Flow Flame Spread in a Microgravity Environment, Proc. Combust. Inst., 23,(1990b),1627-1633. CrossRef | |
Lin.Tzung-hsien and Chen. Chiun-Hsun, “Influence of Two-dimensional Gas Phase Radiation on Downward Flame Spread”, Combust.Sci. and Tech., 141(1999)83-106. CrossRef | |
Rhatigan. J, Bedir.H and T'ien,J.S, Gas Phase Radiative Effects on the Burning and Extinction of a Solid, Combust.Flame, 112, (1998), 231-241. CrossRef | |
Pettegrew, R., Street, K., Plitch, N., T'ien, J. S. and Morrison, P., “Measurement and Evaluation of the radiative Properties of Thin Solid Fuels,” AIAA paper no 2003-0511, 2003. | |
Patankar. S. V, Numerical Heat Transfer and Fluid Flow (New York: Hemisphere) 1980 | |
Sandra. L.Olson, The Effect of Microgravity on Flame spread Over a Thin fuel, M. S. Dissertation, Case Western Reserve University, Cleveland, OH,(1987). |