Isman, K. E.
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Top Tech Exam Hydraulics Question: How Well Would You Have Done?
Sprinkler Quarterly,
No. 154,
23-25,
May/June 2009
Mowrer, F. W.
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Driving Forces for Smoke Movement and Management.
Maryland Univ., College Park
Fire Technology,
Vol. 45,
No. 2,
147-162,
June 2009
Lei, S.; Turan, A.
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Nonlinear/Chaotic Behavior in Thermo-Acoustic Instability.
Manchester Univ., UK
Combustion Theory and Modelling,
Vol. 13,
No. 3,
541-557,
June 2009
Shih, H. Y.
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Flame Spread and Interactions in an Array of Thin Solids in Low-Speed Concurrent Flows.
Chang Gung Univ., Taoyuan, Taiwan
Combustion Theory and Modelling,
Vol. 13,
No. 3,
443-459,
June 2009
Zhukov, V. P.
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Kinetic Model of Alkane Oxidation at High Pressure From Methane to n-Heptane.
DLR Lampoldshausen, German Aerospace Center, Hardthausen, Germany
Combustion Theory and Modelling,
Vol. 13,
No. 3,
427-442,
June 2009
Harrison, J.; Brewster, M. Q.
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Analysis of Thermal Radiation From Burning Aluminium in Solid Propellants.
Illinois Univ., Urbana
Combustion Theory and Modelling,
Vol. 13,
No. 3,
389-411,
June 2009
Lacaze, G.; Cuenot, B.; Poinsot, T.; Oschwald, M.
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Large Eddy Simulation of Laser Ignition and Compressible Reacting Flow in a Rocket-Like Configuration.
CERFACS, 42 Avenue G. Coriolis, 31057 Toulouse cedex, France; Institut de Mécanique des Fluides de Toulouse, CNRS, Avenue C. Soula, 31400 Toulouse, France; DLR Lampoldshausen, 74239 Hardthausen, Germany
Combustion and Flame,
Vol. 156,
No. 6,
1166-1180,
June 2009
Goldsborough, S. S.
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Chemical Kinetically Based Ignition Delay Correlation for Iso-Octane Covering a Wide Range of Conditions Including the NTC Region.
Marquette Univ., Milwaukee, WI
Combustion and Flame,
Vol. 156,
No. 6,
1248-1262,
June 2009
Gao, J.; Moon, S.; Zhang, Y.; Nishida, K.; Matsumoto, Y.
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Flame Structure of Wall-Impinging Diesel Fuel Sprays Injected by Group-Hole Nozzles.
Hiroshima Univ., Higashi-Hiroshima, 739-8527, Japan; Tokyo Denki University, Tokyo, 101-8457, Japan
Combustion and Flame,
Vol. 156,
No. 6,
1263-1277,
June 2009
Zhi-min, L.; Ji-dong, L.
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Influences of O2 Concentration on NO Reduction and N2) Formation in Thermal deNOx Process.
South China University of Technology, Guangzhou, 510640, PR China
Combustion and Flame,
Vol. 156,
No. 6,
1303-1315,
June 2009