4.6 Article

Scale effect on flow and thermal boundaries in micro-/nano-channel flow using molecular dynamics-continuum hybrid simulation method

出版社

WILEY
DOI: 10.1002/nme.2683

关键词

molecular dynamics simulation; finite volume method; hybrid simulation; velocity slip; temperature jump; micro-/nano-fluidics

资金

  1. National Natural Science Foundation of China [50736005, 50636050]
  2. National Basic Research Program of China [2007CB206902]

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The molecular dynamics (MD)-continuum hybrid simulation method has been developed in two aspects in the present work: (1) The energy equation has been combined into the coupling method in order to obtain the hybrid temperature profile and (2) the coupling method has been improved by the local linearization to obtain a smoother parametric profile. The developed method is primarily validated by analytical Solutions and full MD results. Then, it is employed to Study the scale effect oil the flow and thermal boundaries in micro-/nano-channel flow. The hybrid velocity and temperature profiles are obtained with the channel height (H) ranging from 60 sigma to 2014 sigma and the solid-liquid coupling (beta) ranging from 0.1 to 50. Scale effect has shown strong influence on the boundaries. Obvious slip characteristics can be found in the profiles, i.e. velocity slip and temperature jump, when H is small and beta is large. However, the results also show that the profiles can be well predicted to converge to the macroscale non-slip/non-jump analytical when H is large enough, where the effect of beta can be omitted and the slip characteristics disappear. Correlations of relative slip length, relative temperature jump and pressure gradient with H are fitted from the simulation results. Copyright (C) 2009 John Wiley & Sons, Ltd.

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