M. K. Borg, D. A. Lockerby, and J. M. Reese, A hybrid molecular-continuum simulation method for incompressible ows in micro/nanouidic networks, 2013.

M. K. Borg, D. A. Lockerby, and J. M. Reese, A multiscale method for micro/nano ows of high aspect ratio, Journal of Computational Physics, vol.233, p.400413, 2013.

M. K. Borg, D. A. Lockerby, and J. M. Reese, The FADE mass-stat: A technique for inserting or deleting particles in molecular dynamics simulations, The Journal of Chemical Physics, vol.140, issue.7, 2014.
DOI : 10.1063/1.1734110

M. K. Borg, D. A. Lockerby, and J. M. Reese, A hybrid molecularcontinuum method for unsteady compressible multiscale ows
DOI : 10.1017/jfm.2015.83

URL : http://strathprints.strath.ac.uk/54095/1/Borg_etal_JFM_2015_A_hybrid_molecular_continuum_method_for_unsteady_compressible.pdf

M. Bugel and G. Galliéro, Thermal conductivity of the Lennard-Jones uid: an empirical correlation, Chem. Phys, 2008.

R. Chénier, O. Eymard, and . Touazi, Numerical results using a colocated nite-volume scheme on unstructured grids for incompressible uid ows, Numer. Heat Tr. B-Fund, vol.49, issue.3, p.259276, 2006.

R. Chénier, R. Eymard, O. Herbin, and . Touazi, Collocated nite volume schemes for the simulation of natural convective ows on unstructured meshes, Int. J. Numer. Methods Fluids, vol.56, issue.11, p.20452068, 2008.

K. Dadzie and J. G. Méolans, Temperature jump and slip velocity calculations from an anisotropic scattering kernel, Physica A: Statistical Mechanics and its Applications, vol.358, issue.2-4, p.328346, 2005.
DOI : 10.1016/j.physa.2005.04.013

P. V. Delgado-buscalioni and . Coveney, Usher: an algorithm for particle insertion in dense uids, J. Chem. Phys, vol.119, issue.2, p.978987, 2003.
DOI : 10.1063/1.1579475

URL : http://arxiv.org/abs/cond-mat/0303366

D. Drikakis and N. , Asproulis, Multiscale computational modelling of ow and heat transfer, International Journal of Numerical Methods for Heat & Fluid Flow, 2010.

A. Dupuis, E. M. Kotsalis, and P. Koumoutsakos, Coupling lattice Boltzmann and molecular dynamics models for dense fluids, Physical Review E, vol.75, issue.4, p.46704, 2007.
DOI : 10.1103/PhysRevE.75.046704

URL : http://arxiv.org/abs/cond-mat/0610774

C. Galliéro, A. Boned, and . Baylaucq, Molecular dynamics study of the lennard-jones uid viscosity: Application to real uids

G. Hadjiconstantinou, Hybrid Atomistic???Continuum Formulations and the Moving Contact-Line Problem, Journal of Computational Physics, vol.154, issue.2, p.245265, 1999.
DOI : 10.1006/jcph.1999.6302

URL : http://dspace.mit.edu/bitstream/1721.1/9791/2/42910936-MIT.pdf

J. Kolafa and I. Nezbeda, The Lennard-Jones uid: An accurate analytic and theoretically-based equation of state, Fluid Phase Equilib, vol.100, p.134, 1994.

S. Liu, X. Chen, M. O. Nie, and . Robbins, A continuum atomistic simulation of heat transfer in micro-and nano-ows, J. Comput. Phys, vol.227, p.279291, 2007.

. Maruyama, Molecular dynamics method for microscale heat transfer Advances in Numerical Heat Transfer, p.189226, 2000.

T. Maruyama and . Kimura, A study on thermal resistance over a solid-liquid interface by the molecular dynamics method, Therm. Sci. Eng, vol.7, issue.1, p.6368, 1999.

. Meier, Computer Simulation and Interpretation of the Transport Coecients of the Lennard-Jones Model Fluid, 2002.

M. Mohamed and A. A. Mohamad, A review of the development of hybrid atomisticcontinuum methods for dense uids, Microuid. Nanouid, vol.8, issue.3, p.283302, 2010.

S. Nie, M. O. Chen, and . Robbins, Hybrid continuum-atomistic simulation of singular corner ow, Phys. Fluids, vol.16, p.357913, 2004.
DOI : 10.1063/1.1779531

T. O. Connell and P. A. Thompson, Molecular dynamics continuum hybrid computations: A tool for studying complex uid ows, Phys. Rev. E, vol.52, p.57925795, 1995.

A. Patronis, D. A. Lockerby, M. K. Borg, and J. M. Reese, Hybrid continuummolecular modelling of multiscale internal gas ows, Journal of Computational Physics, 2013.
DOI : 10.1016/j.jcp.2013.08.033

URL : http://doi.org/10.1016/j.jcp.2013.08.033

D. Rapaport, The art of molecular dynamics simulation, 2004.

W. Ren and W. , Heterogeneous multiscale method for the modeling of complex uids and micro-uidics, J. Comput. Phys, vol.204, issue.1, p.126, 2005.

D. A. Stephenson, M. K. Lockerby, J. M. Borg, and . Reese, Multiscale simulation of nanouidic networks of arbitrary complexity, 2015.

. Struchtrup, Maxwell boundary condition and velocity dependent accommodation coecient, Physics of Fluids, vol.25, issue.11, 2013.
DOI : 10.1063/1.4829907

J. Sun, Y. L. He, and W. Q. Tao, Molecular dynamics-continuum hybrid simulation for condensation of gas ow in a microchannel, Microuid. Nanouid, 2009.

J. Sun, Y. L. He, and W. Q. Tao, A molecular dynamics study on heat and mass transfer in condensation over smooth/rough surface, International Journal of Numerical Methods for Heat & Fluid Flow, vol.21, issue.2, p.244267, 2011.
DOI : 10.1063/1.468216

J. Sun, Y. L. He, W. Q. Tao, J. W. Rose, and H. S. Wang, Multiscale study of liquid ow in micro/nanochannels: eects of surface wettability and topology, Microuid. Nanouid, 2012.

F. Tehver, J. Toigo, J. R. Koplik, and . Banavar, Thermal walls in computer simulations, Physical Review E, vol.57, issue.1, p.17, 1998.
DOI : 10.1103/PhysRevE.57.R17

Q. To, V. Vu, G. Lauriat, and C. Léonard, Boundary conditions for gas ow problems from anisotropic scattering kernels, Journal of Mathematical Physics, vol.56, issue.10, 2015.
DOI : 10.1063/1.4933223

E. Touazi, R. Chénier, and . Eymard, Simulation of natural convection with the collocated clustered nite volume scheme, Computers & Fluids, vol.37, issue.9, p.11381147, 2008.

H. Vu, B. Trouette, Q. To, and E. Chénier, Multiscale modelling and hybrid atomistic-continuum simulation of nonisothermal ows in microchannel, Microuid. Nanouid, 2016.

J. H. Werder, P. Walther, and . Koumoutsakos, Hybrid atomistic-continuum method for the simulation of dense uid ows, J. Comput. Phys, vol.205, issue.1, p.373390, 2005.

L. Xu, Z. Q. Zhou, and X. D. Xu, Molecular dynamics simulation of micro-Poiseuille ow for liquid argon in nanoscale, International Journal of Numerical Methods for Heat & Fluid Flow, vol.14, p.664688, 2004.

J. Zhou, H. B. Luan, Y. L. He, J. Sun, and W. Q. Tao, A study on boundary force model used in multiscale simulations with non-periodic boundary condition, Microuid. Nanouid, vol.16, p.587595, 2014.