论文标题

空腔塌陷在老虎机几何形状附近

Cavity collapse near slot geometries

论文作者

Andrews, Elijah D., Rivas, David Fernández, Peters, Ivo R.

论文摘要

固体边界附近气体或蒸气气泡的崩溃会产生针对边界的射流。该射流引起的高表面压力和剪切应力会损坏或清洁表面。更复杂的几何形状将导致崩溃行为的变化,尤其是射流方向。先前的大多数研究都集中在简单的平坦边界或具有分析解决方案的有限案例上。我们在数值和实验上研究平面边界中的插槽如何影响单个气泡的射流方向。我们使用边界元素模型来预测射流方向如何取决于关键的几何参数,并表明当参数适当地归一化时,结果崩溃到了单个曲线。然后,我们在实验中使用激光诱导的空化来验证预测,并将实验结果与预测的依赖性进行比较。这项研究揭示了射流远离插槽的趋势,并表明射流方向与足够高的插槽无关。

The collapse of a gas or vapour bubble near a solid boundary produces a jet directed towards the boundary. High surface pressure and shear stress induced by this jet can damage, or clean, the surface. More complex geometries will result in changes in collapse behaviour, in particular the direction of the jet. The majority of prior research has focused on simple flat boundaries or limited cases with analytic solutions. We numerically and experimentally investigate how a slot in a flat boundary affects the jet direction for a single bubble. We use a boundary element model to predict how the jet direction depends on key geometric parameters and show that the results collapse to a single curve when the parameters are normalised appropriately. We then experimentally validate the predictions using laser-induced cavitation and compare the experimental results to the predicted dependencies. This research reveals a tendency for the jet to be directed away from a slot and shows that the jet direction is independent of slot height for slots of sufficient height.

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