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Numerical simulation of axisymmetric drop formation using a coupled level set and volume of fluid method

机译:液位和液位耦合法对轴对称液滴形成的数值模拟

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Numerical simulations have been carried out to examine the axisymmetric formation of drops of Newtonian liquid injected from a vertical orifice under constant flow conditions into the ambient air. The numerical simulation was performed by solving axisymmetric Navier-Stokes equations with a coupled level-set and. volume-of-fluid(CLSVOF) method. In this work, the dynamics of the formation of drops are investigated over a range of the Ohnesorge number Oh = 0.01, 0.023 and 0.13, and the Bond number Bo = 0.33, 0.5 and 2.205, as the Weber number We increases. The different responses of drop formation such as period-1 dripping with (PIS) or without satellite drops (P1), complex dripping (CD) and jetting (J) are discussed. The different responses of drop formation were identified quantitatively from the time history of growing length of drop at the orifice. The transition of different responses is shown on the map which exhibits the variation of limiting length of drop at breakup or the volume of the detached primary drop with We while keeping Oh and Bo fixed. The numerical investigation of liquid jet formation in terms of the evolution of growing length of jet under different computational grid sizes was discussed. It is proposed that the almost stable liquid jet formation can be found as the mesh size decreases. The accuracy of the present computed results is assessed by comparisons with the previous investigations. Furthermore, it is shown that at high Bo = 2.205, low Oh = 0.023 and We = 0.0177, the system exhibits period-2 with satellite drop (P2S) response which was not reported before in literature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已经进行了数值模拟以检查在恒定流动条件下从垂直孔口注入到环境空气中的牛顿液体液滴的轴对称形成。通过求解具有耦合水平集和的轴对称Navier-Stokes方程进行数值模拟。流体体积(CLSVOF)方法。在这项工作中,随着韦伯数We的增加,在Ohnesorge数Oh = 0.01、0.023和0.13以及键数Bo = 0.33、0.5和2.205的范围内研究了液滴形成的动力学。讨论了液滴形成的不同响应,例如有(PIS)或无卫星液滴(P1)的第1期滴水,复杂滴(CD)和喷射(J)。液滴形成的不同响应是根据孔中液滴长度增长的时间历史来定量确定的。图上显示了不同响应的跃迁,该跃迁显示了破裂时极限液滴长度的变化或We保持Oh和Bo固定的情况下初生液滴的分离体积的变化。讨论了在不同计算网格大小下,随着射流增长长度的演化而对液体射流形成的数值研究。提出随着筛孔尺寸减小,可以发现几乎稳定的液体射流形成。通过与以前的研究进行比较来评估当前计算结果的准确性。此外,表明在高Bo = 2.205,低Oh = 0.023和We = 0.0177的情况下,系统表现出具有卫星下降(P2S)响应的周期2,这在文献中是前所未有的。 (C)2016 Elsevier Ltd.保留所有权利。

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