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Dynamics of Collapse of Free Surface Bubbles

机译:自由表面气泡坍塌的动力学

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We experimentally study the collapse of cavities formedby bubbles of different radius R at the free surface of five different fluids. The tangential and normal velocities of the disturbance front on the bubble surface were measured andshown that the tangential velocities scale as the capillary velocity (σ/ρR)1/2. The total time for the completion of cavity collapse was measured and shown to scale as capillary time scale R3/2/(σ/ρ)1/2. We hence infer thatthe cavity collapse is dominated by surface tension and inertia with viscosity not playing a role in the regime of our investigation. Such a behavior of cavity dynamics is different from the behavior of jet velocity discussed by Sangeeth et.al.[9] wherein the jet velocity showed a clear viscous cut off. The rate of change of cavity volume was found to be constant with time, the implications of which needs to be investigated further.
机译:我们通过实验研究了在五种不同流体的自由表面上由不同半径R的气泡形成的空洞的坍塌。测量了气泡表面扰动前沿的切向和法向速度,表明切向速度与毛细管速度(σ/ρR)1/2成正比。测量完成腔塌陷的总时间,并显示为毛细管时间标度R3 / 2 /(σ/ρ)1/2。因此,我们推断腔塌陷是由表面张力和惯性控制的,而粘度在我们的研究范围中不起作用。腔动力学的这种行为不同于Sangeeth等人[9]讨论的射流速度行为。其中喷射速度显示出清晰的粘性截止。发现腔体积的变化率是随时间恒定的,其含义需要进一步研究。

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