Title of article
Nonasymptotic Transport Properties in Fluids and Mixtures Near a Critical Point
Author/Authors
R. Folk and G. Moser ، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1998
Pages
15
From page
1003
To page
1017
Abstract
We review the critical dynamics of fluids and mixtures. Special attention in the
comparison with experiment is paid to nonasymptotic effects. Our theoretical
results are based on the complete model Hʹ of Siggia, Halperin, and Hohenberg
including the sound mode variables. Using the dynamic renormalization group
theory, we calculate the temperature dependence of the transport coefficients as
well as the frequency-dependent sound velocity and sound attenuation. In
mixtures a time ratio between the Onsager coefficients related to the diffusive
modes, which is directly related to the critical enhancement of the thermal
conductivity near a consolute point, has to be taken into account. The sound
mode contains, besides the dynamic parameters, a static coupling related to the
logarithmic derivative of the weakly diverging specific heat. The deviation from
the asymptotic value of this coupling at finite frequencies and temperature distance
from Tc leads to additional nonasymptotic effects. Our theory, which
derives the phenomenological ansatz of Ferrell and Bhattacharjee for pure fluids
and mixtures near a consolute point, is also applicable near a plait point.
Keywords
Dynamic critical phenomena , gas-liquid criticalpoint , Mixtures , Plait point , renormalization-group theory , sound attenuation , consolute point , transport properties.
Journal title
International Journal of Thermophysics
Serial Year
1998
Journal title
International Journal of Thermophysics
Record number
426420
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