首页> 外文期刊>The Journal of Chemical Physics >HYDRODYNAMIC BOUNDARY CONDITIONS FOR CONFINED FLUIDS VIA A NONEQUILIBRIUM MOLECULAR DYNAMICS SIMULATION
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HYDRODYNAMIC BOUNDARY CONDITIONS FOR CONFINED FLUIDS VIA A NONEQUILIBRIUM MOLECULAR DYNAMICS SIMULATION

机译:通过非平衡分子动力学模拟的受限流体的水动力边界条件

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摘要

A nonequilibrium molecular dynamics algorithm is employed to study a fluid confined between two immobile walls. The linear response theory of Bocquet and Barrat [Phys. Rev. E 49, 3079 (1994)] is used to relate phenomenological parameters, which determine the boundary conditions of the interface, to averages over microscopic quantities that can be obtained directly from the simulation. The parameters, which characterize ''stick'' or ''slip'' behavior and the thickness of the immobile fluid layer at the boundaries, have been determined for a model system: namely, a soft-sphere fluid interacting with corrugated walls. (C) 1996 American Institute of Physics. [References: 19]
机译:非平衡分子动力学算法用于研究限制在两个固定壁之间的流体。 Bocquet和Barrat的线性响应理论[Phys。 Rev.E 49,3079(1994)]用于将确定界面边界条件的现象学参数与可直​​接从模拟中获得的微观量的平均值进行关联。已经针对模型系统确定了表征“粘”或“滑”行为以及边界处的不流动流体层厚度的参数:即,软球体流体与波纹壁相互作用。 (C)1996年美国物理研究所。 [参考:19]

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