首页> 外文会议>4th international conference on microanoscale heat and mass transfer 2013 : Microanofluidics and Lab-on-a-chip ... >THE STUDY OF ARGON'S VISCOSITY NEAR THE WALL OF NANOPORE BY MOLECULAR DYNAMICS SIMULATIONS
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THE STUDY OF ARGON'S VISCOSITY NEAR THE WALL OF NANOPORE BY MOLECULAR DYNAMICS SIMULATIONS

机译:分子动力学模拟研究纳米多孔墙附近氩的黏度

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摘要

Many uncommon gas flow phenomena in nanopores have been found by experiments. Besides that, another special characteristic of gas flow at nanopore is that gas's number density shows uneven distribution. From the point of molecular motion, gas's number density would affect its dynamic viscosity, so it's very necessary to study whether the gas's viscosity is uneven. Due to the gas density's fluctuation usually takes place near the wall surface so the present paper focuses on the gas's viscosity near the wall of nanopore. Our molecular dynamics simulation results indicate that the gas's viscosity in the region near the wall surface isn't a constant and fluctuates greatly. The profiles of gas's viscosity and gas number density coincide very well.
机译:通过实验发现了纳米孔中许多不常见的气体流动现象。除此之外,纳米孔处气流的另一个特殊特征是气体的数密度显示出不均匀的分布。从分子运动的角度来看,气体的数密度会影响其动态粘度,因此有必要研究气体的粘度是否不均匀。由于气体密度的波动通常发生在壁面附近,因此本文着重研究了纳米孔壁附近的气体粘度。我们的分子动力学模拟结果表明,气体在壁表面附近的区域内的粘度不是恒定的,并且波动很大。气体的粘度和气体数密度的曲线非常吻合。

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