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Estimation of bulk viscosity of dilute gases using a nonequilibrium molecular dynamics approach

机译:非醌分子动力学方法估计稀释气体的稀载粘度

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摘要

A method is proposed for the calculation of bulk viscosity, μ_b, of dilute gases using nonequilibrium molecular dynamics (NEMD) simulations. The method uses measurement of mechanical (P_(mech)) and thermodynamic pressure (P_(thermo)) in a NEMD simulation of an expanding fluid and then relates the bulk viscosity to them by the relation μ_b = (P_(mech) ? P_(thermo) )/▽ · →u, where ▽ · →u is the controlled rate of expansion of the fluid per unit volume. A special emphasis is given to the fundamental physical understanding of bulk viscosity in this work. The proposed method is demonstrated for the estimation of bulk viscosity of dilute nitrogen gas in the temperature range of 200–800 K. Variation of bulk viscosity with temperature is reported in the above-mentioned temperature range and is found to be in a reasonably good agreement with the data available in the literature. Furthermore, variation of bulk viscosity with pressure and volumetric expansion rate is obtained. A weak linear dependency of bulk viscosity with pressure is observed, which increases with temperature. However, no significant effect of the rate of volumetric expansion is observed until 108 s?1. Moreover, the effect of the direction of volumetric change (expansion vs. compression) is also demonstrated in this work.
机译:提出了一种用于使用非QuibiRib分子动力学(NEMD)模拟的稀释气体的稀载气体的计算方法。该方法使用在扩展流体的NEMD模拟中测量机械(P_(机械))和热力学压力(P_(热量)),然后通过关系μ_b=(P_(机动机械)Δp_( Thermo))/▽·→U,其中▽·→u是每单位体积的流体的控制速率。特别强调在这项工作中对散装粘度的基本身体理解。所提出的方法经证据估计200-800k温度范围内稀氮气的体积粘度。在上述温度范围内报道了大量粘度的变化,并被发现是合理良好的协议随着文献中提供的数据。此外,获得了具有压力和体积膨胀率的体积粘度的变化。观察到大量粘度与压力的弱线性依赖性,随着温度增加而增加。然而,未观察到体积膨胀速率的显着效果直到108秒?1。此外,在这项工作中还证明了体积变化方向(膨胀与压缩)的效果。

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