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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Direct numerical simulation of three-dimensional liquid jet breakup

机译:APS-流体动力学APS部门第70届年会-事件-三维液体射流破裂的直接数值模拟

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We carry out direct numerical simulations of liquid jet dynamics and breakup using a high-performance code, {it Blue}, which uses a hybrid technique based on the front-tracking and the level-set method; it defines the interface position through a marker function and a local triangular Lagrangian mesh. Liquid jet breakup is an example of interfacial complexity associated with multiphase flows because of the formation of ligaments and their pinch off to give rise to droplet formation. We consider the atomisation of a liquid jet released into a stagnant gas phase where the velocity is stimulated sinusoidally to promote the growth of Kelvin-Helmholtz instabilities, thus forming a flow system characterized by complex interfaces. The spread of cylindrical liquid jet into a coflowing external stream is also considered (essentially, a replication of the Marmottant and Villermaux experimental work).
机译:我们使用高性能代码{it Blue}进行了液体射流动力学和破裂的直接数值模拟,该代码使用基于前向跟踪和水平设置方法的混合技术;它通过标记功能和局部三角形拉格朗日网格来定义界面位置。液体射流破裂是与多相流相关的界面复杂性的一个示例,这是由于形成了韧带并夹住它们导致液滴形成。我们考虑释放到停滞气相的液体射流的雾化,在此以正弦形式刺激速度以促进开尔文-亥姆霍兹不稳定性的增长,从而形成以复杂界面为特征的流动系统。还考虑了将圆柱状液体射流散布到同流的外部流中(本质上是Marmottant和Villermaux实验工作的复制品)。

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