首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >ANALYSIS OF THE INSTABILITY FOR TWO NANO-SCALE LIQUID THREADS COEXISTING IN A PERIODIC FUNDAMENTAL CELL
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ANALYSIS OF THE INSTABILITY FOR TWO NANO-SCALE LIQUID THREADS COEXISTING IN A PERIODIC FUNDAMENTAL CELL

机译:周期性基本细胞中同时存在的两种纳米尺度的螺纹的不稳定性分析

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This paper investigates the vaporization process of two nano-scale liquid threads coexisting in a periodic fundamental cell by molecular dynamics ( MD ) simulation. The influences of liquid thread radius, fundamental cell length, and relative position of the two threads are discussed. Snapshots of molecules, the number of liquid particles formed, and density field are analyzed. Two linear stability criteria, namely, Rayleigh's stability criterion and Kim's stability criterion, are accessed for their validity in molecular scale. It is found that more liquid particles are formed when the separation of the two threads is larger. Moreover, vaporization is slower when the two liquid threads are close to each other. It is also found that the trends of Rayleigh's stability criterion and Kim's stability criterion agree with MD simulation results. However, when the two threads coalesce into a single thread and remain intact, the critical wavelength of perturbation may be increased and the stable domain is broadened. Under such a situation, Rayleigh's stability criterion and Kim's stability criterion underpredict the stable domain.
机译:本文通过分子动力学(MD)模拟研究了周期性基本单元中共存的两个纳米级液体线的汽化过程。讨论了液体螺纹半径,基本单元长度和两条螺纹的相对位置的影响。分析了分子的快照,形成的液体颗粒的数量以及密度场。为了获得它们在分子尺度上的有效性,使用了两个线性稳定性判据,即Rayleigh稳定性判据和Kim稳定性判据。发现当两个线的间隔较大时形成更多的液体颗粒。此外,当两个液体线彼此靠近时,汽化较慢。还发现瑞利稳定准则和金稳定准则的趋势与MD仿真结果吻合。但是,当两条线合并为一条线并保持完整时,扰动的临界波长可能会增加,并且稳定域会变宽。在这种情况下,瑞利的稳定性判据和金氏的稳定性判据会低估稳定域。

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