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RET 14-Field Theory of Polyatomic Gas and Dense Gas

In: Rational Extended Thermodynamics beyond the Monatomic Gas

Author

Listed:
  • Tommaso Ruggeri

    (University of Bologna, Dept. of Mathematics and Res. Center of Applied Mathematics AM²)

  • Masaru Sugiyama

    (Nagoya Institute of Technology, Graduate School of Engineering)

Abstract

The objective of the present chapter is to explain in detail the new ET theory of rarefied polyatomic gases and dense gases with 14 independent fields (ET14), that is, the mass density, the velocity, the temperature, the shear stress, the dynamic pressure, and the heat flux. We adopt the system of field equations with a binary hierarchy structure. We show that the constitutive equations can be determined explicitly by the caloric and thermal equations of state as in the monatomic ET13 theory. We also analyze physically important systems, that is, a rarefied polyatomic gas, a gas with the virial equations of state, a hard-sphere system, and a van der Waals gas. Lastly we show that the ET13 theory of rarefied monatomic gases is derived from the ET14 theory as a singular limit.

Suggested Citation

  • Tommaso Ruggeri & Masaru Sugiyama, 2015. "RET 14-Field Theory of Polyatomic Gas and Dense Gas," Springer Books, in: Rational Extended Thermodynamics beyond the Monatomic Gas, edition 1, chapter 0, pages 109-137, Springer.
  • Handle: RePEc:spr:sprchp:978-3-319-13341-6_5
    DOI: 10.1007/978-3-319-13341-6_5
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