Numerical simulation of distribution of soot size in a laminar flame

Joint Authors

Lalmi, D.
Hadif, R.

Source

Journal of New Technology and Materials / Larbi Ben M'hidi Oum el-Bouaghi University.

Publisher

Larbi Ben M'hidi Oum el-Bouaghi University

Publication Date

2014-12-31

Country of Publication

Algeria

No. of Pages

5

Main Subjects

Physics

English Abstract

The objective of this study is to determine the characteristics of soot (size and distribution) in a laminar flame of diffusion(ethylene_air).The non intrusive technique used is the incandescence induced by laser (LII) discovered by Melton[1].

The interaction laser-particle of soot is described by an ideal model of heat transfer and mass including the various modes of thermal losses (vaporization, conduction, radiation).The equations obtained describing the temporal evolution of the diameter and the temperature of the particle are solved numerically .The ideal model is validated by experimental measurements and confrontation with various powers of the exiting laser ,the result is satisfactory.

Data Type

Conference Papers

Record ID

BIM-551301

American Psychological Association (APA)

Lalmi, D.& Hadif, R.. 2014-12-31. Numerical simulation of distribution of soot size in a laminar flame. International Conference on New Materials and Active Devices (2st : 2014 : Umm al-Bawaqi, Algeria). . Vol. 4, no. 2 (2014), pp.38-42.Oum el-Bouaghi Algeria : Larbi Ben M'hidi Oum el-Bouaghi University.
https://search.emarefa.net/detail/BIM-551301

Modern Language Association (MLA)

Lalmi, D.& Hadif, R.. Numerical simulation of distribution of soot size in a laminar flame. . Oum el-Bouaghi Algeria : Larbi Ben M'hidi Oum el-Bouaghi University. 2014-12-31.
https://search.emarefa.net/detail/BIM-551301

American Medical Association (AMA)

Lalmi, D.& Hadif, R.. Numerical simulation of distribution of soot size in a laminar flame. . International Conference on New Materials and Active Devices (2st : 2014 : Umm al-Bawaqi, Algeria).
https://search.emarefa.net/detail/BIM-551301