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Updated: Jul 3, 2026

An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
Published on: December 4, 2017
Modeling mixture transport at the nanoscale: departure from existing paradigms
Suresh K Bhatia1, David Nicholson
1Division of Chemical Engineering, The University of Queensland, Brisbane, QLD, Australia. s.bhatia@eng.uq.edu.au
Abstract:
We present a novel theory of mixture transport in nanopores, which represents wall effects via a species-specific friction coefficient determined by its low density diffusion coefficient. Onsager coefficients from the theory are in good agreement with those from molecular dynamics simulation, when the nonuniformity of the density distribution is included. It is found that the commonly used assumption of a uniform density in the momentum balance is in serious error, as is also the traditional use of a mixture center of mass based frame of reference.
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