Title of article :
A New Model for Methane Viscosity Based on the Theory of Averaged Intermolecular Potential Field
Author/Authors :
Yang ، Xiaohong Department of Chemistry and Environmental Engineering - Wuhan Polytechnic University , Zhu ، Weiling Department of Chemistry and Environmental Engineering - Wuhan Polytechnic University
From page :
1269
To page :
1276
Abstract :
Methane is the simplest alkane and the main constituent of natural gas, shale gas, and gas hydrate. Its viscosity has both academic and industrial importance. A new model for the methane viscosity was developed based on the theory of the averaged intermolecular potential field. The derived equations of the model were fitted to 1669 experimental data points in good agreement over the parameter ranges: from 100 to 523 K with the pressure from 0.047 up to 1000 MPa. The new model also comprehensively performed better than the famous samples in comparison. The physical base, good numerical behavior, and better-comparing performance suggest that the model has considerable theoretical significance and practical application potentials.
Keywords :
Viscosity , Methane , Model , Molecular interaction , Molecular potential
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
Record number :
2686670
Link To Document :
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