论文标题
二维非线性流体动力学和纳米流体学
Two-dimensional non-linear hydrodynamics and nanofluidics
论文作者
论文摘要
在两个固体平面之间挤压的水单层经历了强烈的平面外限制效果,同时在飞机内自由扩张。结果,这种二维水的运输结合了流体动力学和纳米流体特征,彼此密切相关。在本文中,我们提出并明确求解了一个非线性流体动力方程,该方程描述了二维水流,并从分子动态模拟中推导出的粘度参数。我们证明,二维水在短通道中流动的能力受第二(扩张)粘度系数的控制,从而导致流动压缩和速度饱和度在高压极限下。粘度参数值在很大程度上取决于石墨烯和己酮氮化硼层是否仅通过使用替代材料制造2D通道来限制一个有趣的2D水,从而提供了一个有趣的机会,可以从相同的水分子中获取各种纳米流体。
A water monolayer squeezed between two solid planes experiences strong out-of-plane confinement effects while expanding freely within the plane. As a consequence, the transport of such two-dimensional water combines hydrodynamic and nanofluidic features, intimately linked with each other. In this paper, we propose and explicitly solve a non-linear hydrodynamic equation describing two-dimensional water flow with viscosity parameters deduced from molecular dynamic simulations. We demonstrate that the very ability of two-dimensional water to flow in short channels is governed by the second (dilatational) viscosity coefficient, leading to flow compression and velocity saturation in the high-pressure limit. The viscosity parameter values depend strongly on whether graphene or hexoganal boron nitride layers are used to confine 2D water that offers an interesting opportunity to obtain various nanofluids out of the same water molecules just by using alternate materials to fabricate the 2D channels.