On the possibility of using a one-dimensional model for numerical analysis of the ignition of a liquid condensed material by a single heated particle

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14 Citations (Scopus)

Abstract

A comparison is made of the results obtained for one- and two-dimensional models used to describe the ignition of a liquid condensed material by a single particle heated to high temperatures. Ignition delays and the effect of heat content of the energy source were determined.

Original languageEnglish
Pages (from-to)683-689
Number of pages7
JournalCombustion, Explosion and Shock Waves
Volume46
Issue number6
DOIs
Publication statusPublished - 1 Nov 2010

Fingerprint

ignition
numerical analysis
Ignition
Numerical analysis
Liquids
energy sources
liquids
two dimensional models
Enthalpy
enthalpy
Temperature

Keywords

  • Heated particle
  • Ignition
  • Ignition delay time
  • Liquid condensed material
  • One-dimensional and two-dimensional models

ASJC Scopus subject areas

  • Physics and Astronomy(all)
  • Chemical Engineering(all)
  • Chemistry(all)
  • Energy Engineering and Power Technology
  • Fuel Technology

Cite this

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title = "On the possibility of using a one-dimensional model for numerical analysis of the ignition of a liquid condensed material by a single heated particle",
abstract = "A comparison is made of the results obtained for one- and two-dimensional models used to describe the ignition of a liquid condensed material by a single particle heated to high temperatures. Ignition delays and the effect of heat content of the energy source were determined.",
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author = "Kuznetsov, {G. V.} and Strizhak, {P. A.}",
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AU - Kuznetsov, G. V.

AU - Strizhak, P. A.

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N2 - A comparison is made of the results obtained for one- and two-dimensional models used to describe the ignition of a liquid condensed material by a single particle heated to high temperatures. Ignition delays and the effect of heat content of the energy source were determined.

AB - A comparison is made of the results obtained for one- and two-dimensional models used to describe the ignition of a liquid condensed material by a single particle heated to high temperatures. Ignition delays and the effect of heat content of the energy source were determined.

KW - Heated particle

KW - Ignition

KW - Ignition delay time

KW - Liquid condensed material

KW - One-dimensional and two-dimensional models

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JO - Combustion, Explosion and Shock Waves

JF - Combustion, Explosion and Shock Waves

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