FireDOC Search

displaying 81 - 90 results in total 118

  • Bentz, D. P.; Jensen, O. M.; Hansen, K. K.; Olesen, J. F.; Stang, H.; Haecker, C. J.
    view article (7.389806)

    Influence of Cement Particle-Size Distribution on Early Age Autogenous Strains and Stresses in Cement-Based Materials.
    National Institute of Standards and Technology, Gaithersburg, MD; Aalborg Univ., Denmark; Technical University of Denmark, Lyngby; Wilhelm Dyckerhoff Institut, Wiesbaden, Germany
    Journal of the American Ceramic Society, Vol. 84, No. 1, 129-135, January 2001

  • Barone, A. C.; D'Alessio, A.; D'Anna, A.
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    Morphological Characterization of the Early Process of Soot Formation by Atomic Force Microscopy.
    Universita di Napoli Federico II, Napoli, Italy
    Combustion and Flame, Vol. 132, No. 1/2, 181-187, January 2003

  • Hertzberg, T.; Blomqvist, P.
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    Particles From Fires: A Screening of Common Materials Found in Buildings.
    SP Swedish National Testing and Research Institute, Boras, Sweden
    Fire and Materials, Vol. 27, No. 6, 295-314, November/December 2003

  • Zhao, B.; Yang, Z.; Li, Z.; Johnston, M. V.; Wang, H.
    view article (7.389806)

    Particle Size Distribution Function of Incipient Soot in Laminar Premixed Ethylene Flames: Effect of Flame Temperature.
    Delaware Univ., Newark
    Combustion Institute, Symposium (International) on Combustion, 30th. Proceedings. Volume 30. Part 1. July 25-30, 2004, Combustion Institute, Pittsburgh, PA, Chicago, IL, Chen, J. H.; Colket, M. D.; Barlow, R. S.; Yetter, R. A., Editors, 1441-1448 p., 2005

  • Singh, J.; Patterson, R. I. A.; Kraft, M.; Wang, H.
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    Numerical Simulation and Sensitivity Analysis of Detailed Soot Particle Size Distribution in Laminar Premixed Ethylene Flames.
    Cambridge Univ., England; Southern California Univ., Los Angeles
    Combustion and Flame, Vol. 145, No. 1/2, 117-127, April 2006

  • Bullard, J. W.; Stutzman, P. E.
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    Analysis of CCRL Proficiency Cements 151 and 152 Using the Virtual Cement and Concrete Testing Laboratory.
    National Institute of Standards and Technology, Gaithersburg, MD
    Cement and Concrete Research, Vol. 36, No. 8, 1548-1555, August 2006

  • Patterson, R. I. A.; Kraft, M.
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    Models for the Aggregate Structure of Soot Particles.
    Cambridge Univ., UK
    Combustion and Flame, Vol. 150, No. 1/2, 160-172, October 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

  • Abid, A. D.; Camacho, J.; Sheen, D. A.; Wang, H.
    view article (7.389806)

    Quantitative Measurement of Soot Particle Size Distribution in Premixed Flames: The Burner-Stabilized Stagnation Flame Approach.
    Southern California Univ., Los Angeles
    Combustion and Flame, Vol. 156, No. 10, 1862-1870, October 2009

  • Eden, H. F.
    view article (7.2780204)

    Potential Hazards of Electrostatic Charging by Powders.
    Little, (Arthur D.) Inc., Cambridge, MA
    Chemical Engineering Progress. Loss Prevention. Volume 6, American Institute of Chemical Engineers, New York, 27-33 p., 1972