Title of article :
A multiscale method for micro/nano flows of high aspect ratio
Author/Authors :
Borg، نويسنده , , Matthew K. and Lockerby، نويسنده , , Duncan A. and Reese، نويسنده , , Jason M.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
14
From page :
400
To page :
413
Abstract :
We develop a new multiscale scheme for simulating micro/nano flows of high aspect ratio in the flow direction, e.g. within long ducts, tubes, or channels, of varying section. The scheme couples conventional hydrodynamic conservation equations for mass and momentum-flux with molecular dynamics (MD) in a unified framework. The method is very much different from common ‘domain-decomposition’ hybrid methods, and is more related to micro-resolution methods, such as the Heterogeneous Multiscale Method. We optimise the use of the computationally-costly MD solvers by applying them only at a limited number of streamwise-distributed cross-sections of the macroscale geometry. The greater the streamwise scale of the geometry, the more significant is the computational speed-up when compared to a full MD simulation. We test our new multiscale method on the case of a converging/diverging nanochannel conveying a simple Lennard–Jones liquid. We validate the results from our simulations by comparing them to a full MD simulation of the same test case.
Keywords :
Hybrid method , Molecular dynamics , Coupled solvers , Scale-separation , multiscale simulations
Journal title :
Journal of Computational Physics
Serial Year :
2013
Journal title :
Journal of Computational Physics
Record number :
1484998
Link To Document :
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