Thermal Conductivity of the Multicomponent Neutral Atmosphere
Approximate expressions for the thermal conductivity coefficient of the multicomponent neutral atmosphere consisting of N2, O2, O, He, and H are analyzed and evaluated for the atmospheric conditions by comparing them with that given by the rigorous hydrodynamic theory. The new approximations of the...
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Veröffentlicht in: | Journal of geophysical research. Space physics 2017-12, Vol.122 (12), p.12,476-12,485 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Approximate expressions for the thermal conductivity coefficient of the multicomponent neutral atmosphere consisting of N2, O2, O, He, and H are analyzed and evaluated for the atmospheric conditions by comparing them with that given by the rigorous hydrodynamic theory. The new approximations of the thermal conductivity coefficients of simple gases N2, O2, O, He, and H are derived and used. It is proved that the modified Mason and Saxena approximation of the atmospheric thermal conductivity coefficient is more accurate in reproducing the atmospheric values of the rigorous hydrodynamic thermal conductivity coefficient in comparison with those that are generally accepted in atmospheric studies. This approximation of the thermal conductivity coefficient is recommended to use in calculations of the neutral temperature of the atmosphere.
Key Points
Thermal conductivity coefficient approximations are analyzed and evaluated for the atmospheric conditions
Multicomponent composition of the neutral atmosphere is taken into account
The modified Mason and Saxena approximation of the atmospheric thermal conductivity coefficient is recommended to use |
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ISSN: | 2169-9380 2169-9402 |
DOI: | 10.1002/2017JA024397 |