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Effects of temperature and aperture size on nanojet ejection process by molecular dynamics simulation

机译:分子动力学模拟研究温度和孔径对纳米射流喷射过程的影响

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This paper studies the effects of temperature and aperture size on the nanojet ejection process by means of molecular dynamics simulation using the Lennard-Jones potential. According to the analysis, it can be seen that the spurting atoms from the nanojet aperture are more evenly distributed as the temperature is increased. However, as the temperature lowers, the atoms easily concentrate on the central region. Furthermore, when a larger nanojet aperture was used, the amount of spurting atoms increased and concentrated easily into the central region. The phenomenon of the pressure wave was found with the aid of molecular dynamics.
机译:本文通过利用Lennard-Jones势的分子动力学模拟研究了温度和孔径大小对纳米喷射过程的影响。根据分析,可以看出,随着温度的升高,来自纳米喷嘴孔的喷出原子分布更均匀。但是,随着温度降低,原子容易集中在中心区域。此外,当使用更大的纳米喷嘴孔径时,喷出原子的数量增加并且容易集中到中心区域。借助分子动力学发现了压力波现象。

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