FireDOC Search

displaying 2851 - 2860 results in total 3447

  • LoJacono, D.; Monkewitz, P. A.
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    Scaling of Cell Size in Cellular Instabilities of Nonpremixed Jet Flames.
    École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland
    Combustion and Flame, Vol. 150, No. 1/2, 321-332, October 2007

  • Verbiezen, K.; Donkerbroek, A. J.; Klein-Douwel, R.J. H.; vanVliet, A. P.; Frijters, P. J. M.; Seykens, X. L. J.; Baert, R. S. G.; Meerts, W. L.; Dam, N. J.; terMeulen, J. J.
    view article (1.0)

    Diesel Combustion: In-Cylinder NO Concentrations in Relation to Injection Timing.
    Radboud University of Nijmegen, Toernooiveld 1, 6525 ED Nijmegen, The Netherlands; Eindhoven University of Technology, P.O. Box 513, WH 3.143, 5600 MB Eindhoven, The Netherlands
    Combustion and Flame, Vol. 150, No. 1/2, 333-346, October 2007

  • Tian, Z.; Li, Y.; Zhang, T.; Zhu, A.; Cui, Z.; Qi, F.
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    Experimental Study of Low-Pressure Premixed Pyrrole/OxygenArgon Flames With Tunable Synchrotron Photoionization.
    University of Science and Technology of China, Hefei, Anhui 230029, People's Republic of China; Anhui Normal Univ., Wuhu, Anhui 241000, People's Republic of China
    Combustion and Flame, Vol. 150, No. 1/2, 347-365, October 2007

  • Chen, S.; Cook, W. D.; Chen, F.
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    Thermal and Photopolymerization of Divinyl Ethers Using an Iodonium Initiator: The Effect of Temperature.
    Monash University, Wellington Road, Clayton 3800, Victoria, Australia
    Polymer International, Vol. 56, No. 11, 1423-1431, November 2007

  • Weng, W. G.; Fan, W. C.
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    Pyrolysis Model of Charring Materials Considering the Effect of Ambient Oxygen Concentration.
    Tsinghua Univ., Beijing 100084, People's Republic of China
    Fire and Materials, Vol. 31, No. 7, 463-475, November 2007

  • Kang, D. M.; Culick, F. E. C.; Ratner, A.; National Institute of Standards and Technology
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    Combustion Dynamics of a Low-Swirl Combustor.
    California Institute of Technology, Pasadena, CA; Iowa Univ., Iowa City
    Combustion and Flame, Vol. 151, No. 3, 412-425, November 2007

  • Bruno, A.; deLisio, C.; Minutolo, P.; D'Alessio, A.
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    Evidence of Fluorescent Carbon Nanoparticles Produced in Premixed Flames by Time-Resolved Fluorescence Polarization Anisotropy.
    aCentro di Ricerca e Sviluppo "Coherentia," Napoli, Italy; Istituto di Ricerche sulla Combustione, CNR, Napoli, Italy; Università di Napoli "Federico II," Napoli, Italy
    Combustion and Flame, Vol. 151, No. 3, 472-481, November 2007

  • Jimenez, S.; Ballester, J.
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    Study of the Evolution of Particle Size Distributions and Its Effects on the Oxidation of Pulverized Coal.
    LITEC-CSIC (Spanish Council for Scientific Research), María de Luna, 10, 50018, Zaragoza, Spain; Zaragoza Univ., María de Luna, 3, 50018, Zaragoza, Spain
    Combustion and Flame, Vol. 151, No. 3, 482-494, November 2007

  • Huang, J.; Bushe, W. K.
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    Simulation of Transient Turbulent Methane Jet Ignition and Combustion Under Engine-RelevantConditions Using ConditionalSource-Term Estimation With Detailed Chemistry.
    British Columbia Univ., Vancouver, BC, Canada
    Combustion Theory and Modelling, Vol. 11, No. 6, 977-1008, December 2007

  • Gann, R. G.; Bryner, N. P.
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    Combustion Products and Their Effects on Life Safety.
    National Institute of Standards and Technology, Gaithersburg, MD
    ['Volume 1', 'Chapter 2 - Section 6', 'NFPA FPH2008']
    Volume 1; Chapter 2 - Section 6; NFPA FPH2008
    Fire Protection Handbook, 20th Edition. Volume 1. Chapter 2. Section 6, National Fire Protection Assoc., Quincy, MA, Cote, A. E.; Grant, C. C.; Hall, J. R., Jr.; Solomon, R. E.; Powell, P. A., Editors, 6/11-34 p., 2008