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- W2000878013 abstract "Velocity inversion in a nanoscale cylindrical Couette flow is investigated with the Navier-Stokes (NS) equation and molecular-dynamics (MD) simulation. With general slip boundary conditions in the NS equation, the flow can be classified into five distinct profiles. The condition of velocity inversion is explored in the whole space of four dimensionless variables of $ensuremath{beta}$, slip velocity ratio ${u}^{ensuremath{'}}$, radius ratio ${a}^{ensuremath{'}}$, and angular velocity ratio ${ensuremath{omega}}^{ensuremath{'}}$. MD computer simulations are performed to estimate the constitutive coefficient of the slip velocities at the walls. The flow is generated by a rotating inner wall and a stationary outer wall in conformity with the theoretical result. By varying an attraction parameter in the Lennard-Jones potential, the slip velocities can be easily controlled. The theoretical predictions are compared with the simulation results. We find that in the intermediate range of the attraction parameter the two results are quite comparable to some extent, but at both extreme values of the attraction parameter, they are quite different." @default.
- W2000878013 created "2016-06-24" @default.
- W2000878013 creator A5066622770 @default.
- W2000878013 date "2009-03-25" @default.
- W2000878013 modified "2023-09-23" @default.
- W2000878013 title "Slip velocity and velocity inversion in a cylindrical Couette flow" @default.
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- W2000878013 doi "https://doi.org/10.1103/physreve.79.036312" @default.
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