Title of article
Thermodynamic Properties of Gases from Speed-of-Sound Measurements
Author/Authors
M. Bijedi? and N. Neimarlija ، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
11
From page
268
To page
278
Abstract
A procedure for deriving thermodynamic properties of gases from speed of
sound is preseInted. It is based on numerical iIntegration of ordinary differential
equations (ODEs) (rather than partial differential equations—PDEs)
connecting speed of sound with other thermodynamic properties in the
T -p domain. The procedure enables more powerful methods of higher-order
approximation to ODEs to be used (e.g., Runge-Kutta) and requires only
Dirichlet initial conditions. It was tested on gaseous argon in the temperature
range from 250 to 450K and in the pressure range from 0.2 to 12MPa,
and also on gaseous methane in the temperature range from 275 to 375K
and in the pressure range from 0.4 to 10MPa. The density and isobaric heat
capacity of argon were derived with absolute average deviations of 0.007%
and 0.03%, respectively. The density and isobaric heat capacity of methane
were derived with absolute average deviations of 0.006% and 0.09%, respectively.
Keywords
Runge-Kutta , heat capacity , Density , PDE , ODE , speed ofsound.
Journal title
International Journal of Thermophysics
Serial Year
2007
Journal title
International Journal of Thermophysics
Record number
427442
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