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Modelling of a single drop impact onto liquid film using particle method

机译:用颗粒法将单滴冲击的模拟造型

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The process of single liquid drop impact on thin liquid surface is numerically simulated with moving particle semi-implicit method. The mathematical model involves gravity, viscosity and surface tension. The model is validated by the simulation of the experimental cases. It is found that the dynamic processes after impact are sensitive to the liquid pool depth and the initial drop velocity. In the cases that the initial drop velocity is low, the drop will be merged with the liquid pool and no big splash is seen. If the initial drop velocity is high enough, the dynamic process depends on the liquid depth. If the liquid film is very thin, a bowl-shaped thin crown is formed immediately after the impact. The total crown subsequently expands outward and breaks into many tiny droplets. When the thickness of the liquid film increases, the direction of the liquid crown becomes normal to the surface and the crown propagates outward. It is also found that the radius of the crown is described by a square function of time: r{sub}c = [c(t -t{sub}o)]{sup}0.5. When the liquid film is thick enough, a crown and a deep cavity inside it are formed shortly after the impact. The bottom of the cavity is initially oblate and then the base grows downward to form a sharp corner and subsequently the corner moves downward.
机译:用移动颗粒半隐式法测定对薄液体表面上的单液滴冲击的过程。数学模型涉及重力,粘度和表面张力。通过模拟实验案例验证该模型。结果发现,冲击后的动态过程对液体池深度和初始下降速度敏感。在初始下降速度低的情况下,液滴将与液体池合并,并且没有看到大溅。如果初始下降速度足够高,则动态过程取决于液体深度。如果液体膜非常薄,则在冲击后立即形成碗状的薄冠。总冠随后向外扩展并突破到许多微小的液滴中。当液体膜的厚度增加时,液体冠的方向变为正常的表面,并且冠冠向外传播。还发现,冠的半径由时间的方形函数描述:R {Sub} C = [C(T-T {Sub} O)] {sup} 0.5。当液体膜足够厚时,在冲击后不久形成其内部的冠和深腔。腔的底部最初是扁平的,然后底座向下生长以形成尖角,随后拐角向下移动。

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