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Titlebook: IUTAM Symposium on Advances in Micro- and Nanofluidics; Proceedings of the I Marco Ellero,Xiangyu Hu,Nikolaus Adams Conference proceedings

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Nonlinear Electrokinetic Flow: Theory, Experiment, and Potential Applicationstration polarization (CP) method with the ionic concentration gradients in the bulk phase are presented. Summary of the more recent experimental/theoretical advances in the study of nonlinear electrokinetic flows as well as the future outlook and implications on both science and engineering is given.
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Estimation of the Poiseuille Number in Gas Flows Through Rectangular Nano- and Micro-channels in the hydrodynamic limit. The flow problem is solved via kinetic theory, based on the BGK kinetic equation subject to Maxwell diffuse specular boundary conditions. Tabulated results of the Poiseuille number are presented for various aspect ratios and accommodation coefficients. At the hydrodynamic limit the well known results are recovered.
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Variation of Transport Properties Along Nanochannels: A Study by Non-equilibrium Molecular Dynamics channel widths where wall-fluid interaction affects most of the fluid region, transport properties present different behavior in comparison to bulk-like behavior. Following the nanoscale methodology described in the paper we can extract transport properties that can be used as input in macroscopic or multiscale simulations.
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Moving Contact Line with Balanced Stress Singularitiesnterface width and the thickness of the first molecule layer at the wall surface. The widely used Navier boundary condition and Cox’s hypothesis are also derived following the same procedure by permitting finite-wall slip.
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