Ball, R.; McIntosh, A. C.; Brindley, J.
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Feedback Processes in Cellulose Thermal Decomposition: Implications for Fire-Retarding Strategies and Treatments.
Australian National University, Canberra 0200, Australia; Leeds Univ., Yorkshire, UK
Combustion Theory Modelling,
Vol. 8,
No. 2,
281-291,
June 2004
Cho, J. H.; Lieuwen, T.
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Laminar Premixed Flame Response to Equivalence Ratio Oscillations.
Georgia Institute of Technology, Atlanta
Combustion and Flame,
Vol. 140,
No. 1/2,
116-129,
January 2005
Appel, C.; Mantzaras, J.; Schaeren, R.; Bombach, R.; Inauen, A.
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Turbulent Catalytically Stabilized Combustion of Hydrogen/Air Mixtures in Entry Channel Flows.
Paul Scherrer Institute, Combustion Research, Switzerland
Combustion and Flame,
Vol. 140,
No. 1/2,
70-92,
January 2005
Kim, D. S.; Kim, M. Y.; Lee, C. S.
view article (3.861301)
Combustion and Emission Characteristics of Partial Homogeneous Charge Compression Ignition Engine.
Hanyang Univ., Seoul, Korea; Graduate School of Hanyang University, Seoul, Korea
Combustion Science and Technology,
Vol. 177,
No. 1,
107-125,
January 2005
Naha, S.; Briones, A. M.; Aggarwal, S. K.
view article (3.861301)
Effect of Fuel Blends on Pollutant Emissions in Flames.
University of Illinois, Urbana-Champaign
Combustion Science and Technology,
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No. 1,
183-220,
January 2005
Sod, G. A.
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Numerical Methods in Fluid Dynamics.
Numerical Methods in Fluid Dynamics. Initial and Initial Boundary-Value Problems,
Cambridge University Press, New York, NY,
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Computational Methods for Fluid Flow.
Computational Methods for Fluid Flow. Springer Series in Computational Physics,
Springer-Verlag, New York, NY,
Beiglbock, W.; Cabannes, H.; Holt, M.; Keller, H.B.; Killeen, J.; Orszag, S. A., Editors,
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1983
Xiaojun, C.; Lizhong, Y.; Zhihua, D.; Weicheng, W.
view article (3.861301)
Multi-Layer Zone Model for Predicting Fire Behavior in a Fire Room.
University of Science and Technology of China, Hefei, Anhui Province, People's Republic of China
Fire Safety Journal,
Vol. 40,
No. 3,
267-281,
April 2005
Wakamatsu, T.; Mizuno, K.; Tanaka, T.
view article (3.861301)
Three-Deminesional Heat Flow Analysis Model of Steel Structural Members Upon Fire Exposure: Prediction of Temperature Properties of Exterior Steel Structural Members Exposed to Fire.
Tokyo University of Science, Japan; Ochanomizu Univ., Japan
Fire Science and Technology (International Journal for Fire Science and Technology),
Vol. 23,
No. 5,
338-400,
2004
Chang, C. H.; Huang, H. C.
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Water Requirements Estimation Model for Fire Suppression: A Study Based on Integrated Uncertainty Analysis.
National Taipei University of Technology, Taiwan; Taoyuan County Fire Department, Taiwan
Fire Technology,
Vol. 41,
No. 1 / 1st Quarter,
5-24,
January 2005