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By William Bartok (Eds.)

content material: learn matters and know-how : an summary / A.A. Boni, R.B. Edelman, D. Bienstock, and J. Fischer --
Combustion and emissions of artificial gas parts : research and modeling / R.B. Edelman, R.C. Farmer, and T.-S. Wang --
artificial gasoline atomization features / R.G. Oeding and W.D. Bachalo --
Staged combustion : bench-scale pyrolysis : oxidation reviews of coal-derived drinks / James R. Longanbach, Lisa okay. Chan, and Arthur Levy --
Nonequilibrium distillation results in vaporizing droplet streams / S. Hanson, J.M. Beer, and A.F. Sarofim --
Intermediate Btu fuel worldwide flame kinetics / Arthur Levy, Herbert A. Arbib, and E. Lewis Merryman --
non-stop combustion structures : a examine of gasoline nitrogen conversion in jet-stirred combustors / R.M. Kowalik and L.A. Ruth --
man made gasoline personality results on a rich-lean gasoline turbine combustor / Leonard C. Angello, William C. Rovesti, Thomas J. Rosfjord, and Richard A. Sederquist --
Combustion of coal-derived gasoline oils / M.W. Pepper, J. Panzer, H. Maaser, and D.F. Ryan --
Soot formation from artificial gasoline droplets / John C. Kramlich, Glenn C. England, and Roy Payne --
influence of liquefaction processing stipulations on combustion features of solvent-refined coal / R.W. Borio, G.J. Goetz, T.C. Lao, A.K. Mehta, N.Y. Nsakala, and W.C. Rovesti --
Small-scale combustion trying out / G.A. Gibbon, J.M. Ekmann, C.M. White, R.J. Navadauskas, H.L. Retcofsky, and J.I. Joubert.

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Extra resources for Combustion of Synthetic Fuels

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Ch002 TABLE I . GENERIC QUASIGLOBAL MODEL (continued). V ALIPHATICS SOOT AROMATICS FORMATION INTERMEDIATES SOOT w 2 CO VI co SOOT SOOT + CO 2 H0 C0 o 2 GASIFICATION H CH 2 4J OH BOUND NITROGEN AND/OR FUEL RICH NITROGEN CONVERSION FUEL VII HCN NO NH ± χ FORMATION 'V °2 Ν NO + THERMAL FIXATION 2. EDELMAN E T AL. Combustion and Emissions 33 process might be obtainable by extending the n o t i o n of a s i n g l e step o v e r a l l r e a c t i o n to a scheme which c h a r a c t e r i z e s the r e a c ­ t i o n s high up i n the chain with one or more "subglobal steps coupled to a set of b e t t e r known d e t a i l e d r e v e r s i b l e r e a c t i o n s to c h a r a c t e r i z e the k i n e t i c s processes at the lower end of the c h a i n .

The i n f l u e n c e of design and operating v a r i a b l e s on spray formation f o r pressure s w i r l atomizers has been w e l l studied ( e . g . , &_>9)· E f f e c t s of f u e l pressure and nominal flow rate (atomizer s c a l e ) are i l l u s t r a t e d i n F i g u r e 4 for a 60 degree hollow cone spray. L i q u i d breakup length decreases and spray q u a l i t y increases with both i n c r e a s i n g pressure and decreasing atomizer s c a l e . A l s o , as flow rate i n c r e a s e s , the spray assumes a more d i s t i n c t c o n i c a l shape.

This r e l a t i v e i n s e n s i t i v i t y suggested that both soot g a s i f i c a t i o n by the other species given i n Table I and s y n e r g i s t i c enhancement of soot formation from a l i p h a t i c s i n mixtures with aromatics should be considered i n our future work. Although the p r e d i c t i o n of Ν 0 emissions under lean and s t o i ­ chiometric combustion with the extended Z e l d o v i c h mechanism i s adequate f o r c e r t a i n a p p l i c a t i o n s , p r e d i c t i v e methods f o r f u e l s c o n t a i n i n g bound n i t r o g e n and f o r r i c h combustion c o n d i t i o n s r e q u i r e s u b s t a n t i a l improvement.

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