Publication detail

Radiation Transfer in Thermal Plasmas of Air, N2 and CO2

AUBRECHT, V. BARTLOVÁ, M.

Original Title

Radiation Transfer in Thermal Plasmas of Air, N2 and CO2

English Title

Radiation Transfer in Thermal Plasmas of Air, N2 and CO2

Type

conference paper

Language

Czech

Original Abstract

Net emission coefficients and partial characteristics of radiation are calculated for thermal plasmas of air, nitrogen and carbon dioxide, respectively at the plasma temperatures of 300 K to 30 000 K and pressures from 0.2 MPa to 1 MPa. Both continuous and line radiation are taken into account. Contribution of molecular species to the total absorption and emission is also analyzed. Comparison of radiation transfer for the given plasmas is presented.

English abstract

Net emission coefficients and partial characteristics of radiation are calculated for thermal plasmas of air, nitrogen and carbon dioxide, respectively at the plasma temperatures of 300 K to 30 000 K and pressures from 0.2 MPa to 1 MPa. Both continuous and line radiation are taken into account. Contribution of molecular species to the total absorption and emission is also analyzed. Comparison of radiation transfer for the given plasmas is presented.

Keywords

thermal plasmas radiation, air, carbon dioxide, nitorgen

Key words in English

thermal plasmas radiation, air, carbon dioxide, nitorgen

Authors

AUBRECHT, V.; BARTLOVÁ, M.

RIV year

2008

Released

7. 9. 2008

Publisher

Cardiff University

Location

Cardiff

ISBN

978-0-9558052-0-2

Book

Proceedings of XVII INternational Conference on Gas Discharges and Their Applications

Pages from

393

Pages to

396

Pages count

4

BibTex

@inproceedings{BUT26855,
  author="Vladimír {Aubrecht} and Milada {Bartlová}",
  title="Radiation Transfer in Thermal Plasmas of Air, N2 and CO2",
  booktitle="Proceedings of XVII INternational Conference on Gas Discharges and Their Applications",
  year="2008",
  pages="393--396",
  publisher="Cardiff University",
  address="Cardiff",
  isbn="978-0-9558052-0-2"
}