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Thermal conductivity of dense noble gases

Author

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  • Le Neindre, B.
  • Garrabos, Y.
  • Tufeu, R.

Abstract

We report thermal conductivity measurements for noble gases at 25°C and pressures up to 1 GPa or to the solidification point. The experimental results are compared with the thermal conductivity data previously obtained in the Van der Waals Laboratory for the noble gases and the data are analyzed in terms of a temperature-independent excess thermal conductivity.

Suggested Citation

  • Le Neindre, B. & Garrabos, Y. & Tufeu, R., 1989. "Thermal conductivity of dense noble gases," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 156(1), pages 512-521.
  • Handle: RePEc:eee:phsmap:v:156:y:1989:i:1:p:512-521
    DOI: 10.1016/0378-4371(89)90137-4
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    References listed on IDEAS

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    1. Imaishi, N. & Kestin, J. & Wakeham, W.A., 1984. "Thermal conductivity of two binary mixtures of gases of equal molecular weight," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 123(1), pages 50-71.
    2. Salisbury, Robert H., 1970. "Metropolitan Decision Processes. By Morris Davis and Marvin G. Weinbaum. Chicago: Rand McNally & Co., 1969. Pp. 150. $6.00.)," American Political Science Review, Cambridge University Press, vol. 64(4), pages 1292-1293, December.
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    Cited by:

    1. Agustín Torres Rodríguez & David Morillón Gálvez & Iván García Kerdan & Rodolfo Silva Casarín, 2023. "A Comparison of a Transparent Thermal Insulation System Filled with Refrigerants and a Pig-Fat Based PCM," Energies, MDPI, vol. 16(9), pages 1-28, April.
    2. Nebelenchuk, V.F. & Mazur, V.A., 1991. "Transport properties of dense fluids via spherical models of the interaction potential," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 178(1), pages 123-148.

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