Simulation of the ignition of liquid fuel with a local source of heating under conditions of fuel burnout

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39 Citations (Scopus)

Abstract

The processes of heat and mass transfer with phase transitions and chemical reactions in the ignition of liquid fuel by a local source of heating, a hot metal particle, under conditions of fuel burnout are studied. The influence of liquid fuel burnout on the ignition characteristics is analyzed, and the results of investigation of the extent of influence of this factor for solid and liquid condensed materials under conditions of local heating are compared.

Original languageEnglish
Pages (from-to)668-673
Number of pages6
JournalRussian Journal of Physical Chemistry B
Volume5
Issue number4
DOIs
Publication statusPublished - 1 Aug 2011

Fingerprint

burnout
liquid fuels
Liquid fuels
ignition
Ignition
Heating
heating
metal particles
mass transfer
Chemical reactions
chemical reactions
Mass transfer
simulation
Phase transitions
Metals
heat transfer
Heat transfer
Liquids
liquids

Keywords

  • Burnout
  • Hot particle
  • Ignition
  • Liquid fuel

ASJC Scopus subject areas

  • Physical and Theoretical Chemistry

Cite this

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abstract = "The processes of heat and mass transfer with phase transitions and chemical reactions in the ignition of liquid fuel by a local source of heating, a hot metal particle, under conditions of fuel burnout are studied. The influence of liquid fuel burnout on the ignition characteristics is analyzed, and the results of investigation of the extent of influence of this factor for solid and liquid condensed materials under conditions of local heating are compared.",
keywords = "Burnout, Hot particle, Ignition, Liquid fuel",
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AU - Kuznetsov, G. V.

AU - Strizhak, P. A.

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AB - The processes of heat and mass transfer with phase transitions and chemical reactions in the ignition of liquid fuel by a local source of heating, a hot metal particle, under conditions of fuel burnout are studied. The influence of liquid fuel burnout on the ignition characteristics is analyzed, and the results of investigation of the extent of influence of this factor for solid and liquid condensed materials under conditions of local heating are compared.

KW - Burnout

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KW - Ignition

KW - Liquid fuel

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