消散
物理
测距
机械
雷诺数
固体表面
近似误差
纳米尺度
分子动力学
曲面(拓扑)
统计物理学
热力学
几何学
统计
化学物理
湍流
大地测量学
量子力学
数学
地理
作者
Xin-Hao Li,Xiang-Xiong Zhang,Min Chen
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2015-05-01
卷期号:27 (5)
被引量:107
摘要
The developments in nanocoating and nanospray technology have resulted in the increasing importance of the impact of micro-/nanoscale liquid droplets on solid surface. In this paper, the impact of a nanodroplet on a flat solid surface is examined using molecular dynamics simulations. The impact velocity ranges from 58 m/s to 1044 m/s, in accordance with the Weber number ranging from 0.62 to 200.02 and the Reynolds number ranging from 0.89 to 16.14. The obtained maximum spreading factors are compared with previous models in the literature. The predicted results from the previous models largely deviate from our simulation results, with mean relative errors up to 58.12%. The estimated viscous dissipation is refined to present a modified theoretical model, which reduces the mean relative error to 15.12% in predicting the maximum spreading factor for cases of nanodroplet impact.
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