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MULTIPLE SPARK-GENERATED BUBBLE INTERACTIONS

机译:多个火花产生的气泡相互作用

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摘要

The complex interactions of two and three spark-generated bubbles are studied using high speed photography. The corresponding simulations are performed using a 3D Boundary Element Method (BEM) code. The bubbles generated are between 3 to 5 mm in radius, and they are either in-phase or out-of-phase with one another. The possible interaction phenomena between two identically sized bubbles are summarized. Depending on their relative distances and phase differences, they can coalesce, jet towards or away from one another, split into smaller bubbles, or `catapult' away from one another. The 'catapult' effect can be utilized to generated high speed jet in the absence of a solid boundary or shockwave. Also three bubble interactions are highlighted. Complicated phenomena such as bubble forming an elliptical shape and bubble splitting are observed. The BEM simulations provide insight into the physics of the phenomena by providing details such as detailed bubble shape changes (experimental observations are limited by the temporal and spatial resolution), and jet velocity. It is noted that the well-tested BEM code [1,21 utilized here is computationally very efficient as compared to other full-domain methods since only the bubble surface is meshed.
机译:使用高速摄影技术研究了两个和三个火花产生的气泡的复杂相互作用。使用3D边界元素方法(BEM)代码执行相应的仿真。产生的气泡的半径在3至5 mm之间,并且彼此同相或异相。总结了两个大小相同的气泡之间可能的相互作用现象。根据它们的相对距离和相位差,它们可以聚结,朝向彼此或远离彼此喷射,分裂成较小的气泡或彼此“远离”。在没有固体边界或冲击波的情况下,“弹射”效应可用于产生高速射流。还将突出显示三个气泡交互。观察到诸如气泡形成椭圆形和气泡分裂等复杂现象。 BEM仿真通过提供详细信息,例如详细的气泡形状变化(实验观察受到时间和空间分辨率的限制)和射流速度,提供了对现象物理学的洞察力。注意,与其他全域方法相比,由于仅对气泡表面进行了网格划分,因此,经过充分测试的BEM代码[1,21在计算上非常有效。

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