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Information Journal Paper

Title

EXPERIMENTAL AND THEORETICAL ANALYSIS OF FLAME SPREAD AND TEMPERATURE IN A POOL FIRE-WITH NANOPARTICLE EFFECTS

Pages

  15-23

Abstract

 In this article, results of FLAME TEMPERATURE measurements of a fire engulfed object are presented. The effects of nano particles at the time of FLAME SPREAD, as well as the effect of such parameters as POOL FIRE dimension, height from fuel surface, and fuel type on FLAME TEMPERATURE are investigated. Multi-walled Carbon nanotubes were used as nano particles, and Kerosene as well as diesel oil were used as fuels. The results show that pool dimension is the most effective parameter for FLAME TEMPERATURE rise. They also indicated that, altogether, presence of MWNT reduces FLAME TEMPERATURE by 10-20%, while it increases the FLAME SPREAD time of kerosene by 15-30% and that of diesel oil by 6-26%.

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  • Cite

    APA: Copy

    NAJAFI, ARASH, & ZARIN GHALAM MOGHADAM, A.A.S.. (2009). EXPERIMENTAL AND THEORETICAL ANALYSIS OF FLAME SPREAD AND TEMPERATURE IN A POOL FIRE-WITH NANOPARTICLE EFFECTS. FUEL AND COMBUSTION, 2(1), 15-23. SID. https://sid.ir/paper/138586/en

    Vancouver: Copy

    NAJAFI ARASH, ZARIN GHALAM MOGHADAM A.A.S.. EXPERIMENTAL AND THEORETICAL ANALYSIS OF FLAME SPREAD AND TEMPERATURE IN A POOL FIRE-WITH NANOPARTICLE EFFECTS. FUEL AND COMBUSTION[Internet]. 2009;2(1):15-23. Available from: https://sid.ir/paper/138586/en

    IEEE: Copy

    ARASH NAJAFI, and A.A.S. ZARIN GHALAM MOGHADAM, “EXPERIMENTAL AND THEORETICAL ANALYSIS OF FLAME SPREAD AND TEMPERATURE IN A POOL FIRE-WITH NANOPARTICLE EFFECTS,” FUEL AND COMBUSTION, vol. 2, no. 1, pp. 15–23, 2009, [Online]. Available: https://sid.ir/paper/138586/en

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