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首页> 外文期刊>The Journal of Chemical Physics >Shear-stress-induced structural arrangement of water molecules in nanoscale Couette flow with slipping at wall boundary
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Shear-stress-induced structural arrangement of water molecules in nanoscale Couette flow with slipping at wall boundary

机译:剪切应力诱导的纳米级库埃特流中水分子的结构排列在壁边界处滑动

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This study investigated the structuring of water molecules in a nanoscale Couette flow with the upper plate subjected to lateral forces with various magnitudes and water slipping against a metal wall. It was found that when the upper plate is subjected to a force, the water body deforms into a parallelepiped. Water molecules in the channel are then gradually arranged into lattice positions, creating a layered structure. The structural arrangement of water molecules is caused by the water molecules accommodating themselves to the increase in energy under the application of a lateral force on the moving plate. The ordering arrangement of water molecules increases the rotational degree of freedom, allowing the molecules to increase their Coulomb potential energy through polar rotation that accounts for the energy input through the upper plate. With a force continuously applied to the upper plate, the water molecules in contact with the upper plate move forward until slip between the water and upper plate occurs. The relation between the structural arrangement of water molecules, slip at the wall, and the shear force is studied. The relation between the slip and the locking/unlocking of water molecules to metal atoms is also studied.
机译:这项研究调查了纳米级库埃特流中水分子的结构,其中上板受到各种大小的侧向力并且水在金属壁上滑动。已经发现,当上板受到力时,水体变形为平行六面体。然后将通道中的水分子逐渐排列成晶格位置,从而形成分层结构。水分子的结构布置是由水分子在移动板上施加侧向力时使其自身适应能量增加而引起的。水分子的有序排列增加了旋转自由度,从而允许分子通过极性旋转增加其库仑势能,从而解释了通过上板输入的能量。在持续施加于上板的力的作用下,与上板接触的水分子向前移动,直到在水和上板之间发生滑动为止。研究了水分子的结构排列,壁面滑动与剪切力之间的关系。还研究了滑移与水分子与金属原子的锁定/解锁之间的关系。

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