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Oscillation of a transient bubble near an aperture made in a convex rigid plate

机译:凸形刚性板中制成的孔附近的瞬态气泡的振荡

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Bubble dynamics near a convex plate with and without a hole is investigated using boundary element method. First, the effects of bubble-hole distance (standoff distance) on the bubble behavior for the convex plate without a hole are determined. Then for the perforated convex plate the effects of standoff distance and the hole diameter on the bubble dynamics are studied. The pressure field and velocity vectors of the fluid surrounding the bubble are provided for better interpretation of the results. Finally, a general classification of the bubble behavior during its collapse phase near the perforated convex plate is presented based on the hole size and the standoff distance. For small standoff distances, during the growth phase, a bump will form on the bubble surface which is closer to the hole. The behavior of the bubble changes if the standoff distance or the hole size are changed. In general, based on the relative value of the two parameters of standoff distance and hole size, four distinctive scenarios of the bubble oscillation can be recognized: (I) two simultaneous jets, (II) a jet directing towards the hole, (III) a jet directing away from the hole (IV) oscillation of the bubble without any jetting induced.
机译:使用边界元方法研究了有孔和无孔的凸板附近的气泡动力学。首先,对于没有孔的凸板,确定气泡-孔距离(间隔距离)对气泡行为的影响。然后,对于多孔凸板,研究了间距和孔直径对气泡动力学的影响。提供气泡周围流体的压力场和速度矢量,以更好地解释结果。最后,根据孔的大小和支座距离,给出了气泡在多孔凸板附近塌陷阶段的行为的一般分类。对于较小的间距,在生长阶段,会在气泡表面上形成一个更靠近孔的凸起。如果改变间距或孔的大小,气泡的行为也会改变。通常,根据对峙距离和孔尺寸这两个参数的相对值,可以识别出气泡振荡的四种不同情况:(I)两个同时喷射,(II)朝向孔的喷射,(III)远离气泡的孔(IV)的射流,不会引起任何射流。

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