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Numerical Study of the Collapse of Multiple Bubbles and the Energy Conversion during Bubble Collapse

机译:多气泡塌陷的数值研究及泡沫塌陷期间的能量转换

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摘要

This paper investigates numerically the collapses of both a single cavitation bubble and a cluster consisting of 8 bubbles, concerning mainly on the conversions between different forms of energy. Direct numerical simulation (DNS) with volume of fluid (VOF) method is applied, considering the detailed resolution of the vapor-liquid interfaces. First, for a single bubble near a solid wall, we find that the peak value of the wave energy, or equivalently the energy conversion rate decreases when the distance between the bubble and the wall is reduced. However, for the collapses of multiple bubbles, this relationship between the bubble-wall distance and the conversion rate reverses, implying a distinct physical mechanism. The evolutions of individual bubbles during the collapses of multiple bubbles are examined. We observe that when the bubbles are placed far away from the solid wall, the jetting flows induced by all bubbles point towards the cluster centre, while the focal point shifts towards the solid wall when the cluster is very close to the wall. We note that it is very challenging to consider thermal and acoustic damping mechanisms in the current numerical methods, which might be significant contributions to the energy budget, and we leave it open to the future studies.
机译:本文在数量上调查了单个空化泡沫和由8个气泡组成的簇的折叠,主要关于不同形式的能量之间的转换。考虑到蒸汽界面的详细分辨率,施加具有流体(VOF)方法的直接数值模拟(DNS)。首先,对于在固体壁附近的单个气泡,我们发现当气泡和壁之间的距离减小时,波能的峰值或等效地降低了能量转换率。然而,对于多气泡的折叠,气泡壁距离与转换率反转之​​间的这种关系,暗示了一种不同的物理机制。检查多气泡塌陷期间单个气泡的演变。我们观察到,当气泡放置远离实心壁时,由所有气泡朝向聚类中心诱导的喷射流,而当簇非常靠近墙壁时,焦点朝向实心壁移位。我们注意到考虑当前数值方法中的热和声阻尼机制非常具有挑战性,这可能对能源预算产生了重大贡献,我们将其开放到未来的研究。

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