Title of article
Lennard–Jones Chain Model for Self-Diffusion of n-Alkanes
Author/Authors
Y.-X. Yu and G.-H. Gao ، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2000
Pages
14
From page
57
To page
70
Abstract
The Lennard Jones chain model, which was developed from the equation for
the self-diffusion coefficient in a Lennard Jones fluid and the molecular
dynamics simulation data of a tangent hard-sphere chain fluid, is used to
calculate the self-diffusion coefficient of n-alkanes. n-Alkanes are characterized
by a Lennard Jones segment diameter, a segment segment iInteraction energy,
and a chain length expressed as the number of segments. The equation
represents the experimental self-diffusion coefficients with an average absolute
deviation of 3.930 for 16 n-alkanes covering wide ranges of temperature and
pressure. The correlated results are compared with those of the rough Lennard
Jones model. A generalized version of the Lennard Jones chain model is preseInted
which requires only the carbon number in order to predict n-alkane self-diffusivity.
Keywords
n-alkane , Friction coefficient , effective hard-sphere diameter , self-diffu-sion coefficient. , Diffusivity , Lennard Jones chain model , rough Lennard Jones model
Journal title
International Journal of Thermophysics
Serial Year
2000
Journal title
International Journal of Thermophysics
Record number
426601
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