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Cavitation processes and negative pressure

机译:空化过程和负压

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Molecular dynamics simulations of a Lennard-Jones fluid under negative pressure are carried out to investigate the inception of vapor phase in the liquid (i.e., cavitation) and properties of liquid under negative pressure. The pressure of the system is reduced by uniform system expansion. In the case of larger expansion ratios, the nuclei of bubbles immediately appear, whereas finite waiting time is observed in case of smaller expansion ratio. This means the system reaches a kinetic limit of metastability. The nucleation rate calculated with the waiting time is 8 orders of magnitude larger than that of classical nucleation theory. Isothermal compressibility is also obtained and its density dependence is discussed. (C) 1998 Elsevier Science B.V. [References: 8]
机译:进行Lennard-Jones流体在负压下的分子动力学模拟,以研究液体中汽相的形成(即空化)和负压下液体的性质。通过均匀的系统扩展来降低系统压力。在较大的膨胀比的情况下,气泡的核立即出现,而在较小的膨胀比的情况下观察到有限的等待时间。这意味着系统达到了亚稳态的动力学极限。通过等待时间计算出的成核率比经典成核理论大8个数量级。还获得了等温压缩率,并讨论了其密度依赖性。 (C)1998 Elsevier Science B.V. [参考:8]

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