Page 538 - Advanced thermodynamics for engineers
P. 538
Bibliography 531
Maly, R., 1984. Spark ignition: its physics and effect on the internal combustion process. In: Hilliard, J.C.,
Springer, G.S. (Eds.), Fuel Economy in Road Vehicles Powered by Spark-Ignition Engines. Plenum Press,
New York.
Merdjani, S., Sheppard, C.G.W., 1993. Gasoline Engine Cycle Simulation Model Using the Leeds Turbulent
Burning Velocity Correlations. SAE 932640.
Metgalchi, M., Keck, J.C., 1980. Laminar burning velocity of propane-air mixtures at high temperature and
pressure. Combust. Flame 38, 143–154.
Metgalchi, M., Keck, J.C., 1982. Burning velocities of mixtures of air with methanol, iso-octane, and indolene at
high pressure and temperature. Combust. Flame 48, 191–210.
Pischinger, S., Heywood, J.B., 1988. A study of flame development and engine performance with breakdown
ignition systems in a visualisation engine (SAE 880518). SAE Trans. 97.
Santavicca, D.A., Liou, D., North, G.L., 1990. A Fractal Model of Turbulent Flame Kernel Growth. SAE 900024.
Strahle, W.C., 1993. An Introduction to Combustion. Gordon and Breach.
Wiki, 2014. http://en.wikipedia.org/wiki/flammability_limit (accessed 28.08.14.).
Zel’dovitch, Y.B., 1948. J. Phys. Chem. USSR 22 (1).
Zel’dovitch, Y.B., Frank-Kamenetsky, D.A., 1938. Compt. Rend. Acad. Sci. USSR 19, 693.
Zel’dovitch, Y.B., Semenov, N., 1940. J. Exp. Theor. Phys., 1084 Physics U.S.S.R. 10, 1116 (Translated as NACA
Tech Memo 1084).
CHAPTER 16: RECIPROCATING INTERNAL COMBUSTION ENGINES
Benson, R.S., Annand, W.J.D., Baruah, P.C., 1975. A simulation model including intake and exhaust systems for a
single cylinder four-stroke cycle spark ignition engine. Int. J. Mech. Sci. 17, 97–124.
Google, 2014. May+fireball+combustion+chamber (accessed 26.06.14.).
Hardenberg, H.O., Hase, F.W., 1979. An empirical formula for computing the pressure rise delay of a fuel from its
cetane number and from the relevant parameters of direct injection diesel engines. SAE Trans. 88 (SAE paper
790493).
Horie, K., Nishizawa, K., 1992. Development of a high fuel economy and high performance four-valve lean burn
engine. In: Paper C448/014 Combustion in Engines Inst. Mech. Engrs. Conf. Proc. MEP, London, pp. 137–143.
Kume, T., Iwamoto, Y., Iida, K., Murakami, N., Akishino, K., Ando, H., 1996. Combustion Control Technologies
for Direct Injection SI Engines (SAE paper 960600).
Stone, R., 2012. Introduction to Internal Combustion Engines, fourth ed. Palgrave Macmillan, Basingstoke.
Watson, N., 1979. Combustion Gas Properties, Internal Report. Dept of Mech Engg, Imperial College, London.
Whitehouse, N.D., Way, R.J.B., 1970. Rate of heat release in diesel engines and correlation with fuel injection
data. Proc. Inst. Mech. Eng. 184 (3J), 17–27.
Winterbone, D.E., Yates, D.A., Clough, E., 1997. Combustion processes in engines. In: Ray, S. (Ed.), High Speed
Photography and Photonics. Focal Press, London, ISBN 0-2405-1479-3, pp. 362–392.
Winterbone, D.E., Pearson, R.J., 1999. Design Techniques for Engine Manifolds. Professional Engineering
Publishing, London and Bury St Edmunds.
Zambare, V.V., 1998. Study of Combustion and Emissions Direct-Injection Diesel Engines Using the Two-colour
Method (PhD thesis). UMIST, Manchester.
CHAPTER 17: GAS TURBINES
Cohen, H., Rogers, G.F.C., Saravanamuttoo, H.I.H., 2009. Gas Turbine Theory, sixth ed.
Lefebvre, A.H., 1998. Gas Turbine Combustion, second ed. Hemisphere Publishing Corporation.

