<p>The present paper reports the full range Joule–Thomson inversion curves of two helium isotopologues, <sup>4</sup>He and <sup>3</sup>He, constructed by the density virial equation of state with state-of-the-art theoretical virial coefficients. The peak temperatures and the peak pressures were determined to be 20.45&#xa0;K and 3.715&#xa0;MPa for <sup>4</sup>He, and 18.57&#xa0;K and 2.456&#xa0;MPa for <sup>3</sup>He. The maximum inversion temperatures at zero pressure were determined to be 44.72&#xa0;K for <sup>4</sup>He and 38.80&#xa0;K for <sup>3</sup>He, which are identical with the expected values from the second virial coefficients. The present full range inversion curves were improved compared to the previous ones especially in their higher temperature branches, and hence they are the most reliable at the point in time.</p>

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Joule–Thomson Inversion Curves of Helium Isotopologues from Theoretical Virial Coefficients

  • Kohei Tada

摘要

The present paper reports the full range Joule–Thomson inversion curves of two helium isotopologues, 4He and 3He, constructed by the density virial equation of state with state-of-the-art theoretical virial coefficients. The peak temperatures and the peak pressures were determined to be 20.45 K and 3.715 MPa for 4He, and 18.57 K and 2.456 MPa for 3He. The maximum inversion temperatures at zero pressure were determined to be 44.72 K for 4He and 38.80 K for 3He, which are identical with the expected values from the second virial coefficients. The present full range inversion curves were improved compared to the previous ones especially in their higher temperature branches, and hence they are the most reliable at the point in time.