Title of article :
Molecular Simulation of Joule–Thomson Inversion Curves
Author/Authors :
C. M. Colina and E. A. Müller ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Abstract :
A method to determine Joule–Thomson inversion curves, using isobaric-isothermal
MoInte Carlo molecular simulations, is preseInted. The usual experimental
practice to obtain the locus of points in which the isenthalpic derivative of
temperature with respect to pressure vanishes is to process volumetric data by
means of thermodynamic relations. This experimental procedure requires the
very precise measurement of volumetric properties at conditions up to five times
the fluidʹs critical temperature and twelve times its critical pressure. These harsh
experimental conditions have hindered the publication of data for even simple
fluids and mixtures. By using molecular simulation, these problems may be circumveInted,
since the computational effort is roughly independent of the actual
value of the pressure or the temperature. In general, Joule-Thomson inversion
curves obtained by molecular simulation may be used either as an unambiguous
test for equations of state in the supercritical and high-pressure regions or for
the prediction of real fluid behavior, should the potential be well known. Both
applications are exemplified for a Lennard-Jones fluid for which the complete
inversion curve is obtained.
Keywords :
Joule-Thomson inversion curves , Lennard–Jones fluid , MoInte Carlo. , molecular simulations
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics