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Purely irrotational theories for the viscous effects on the oscillations of drops and bubbles

机译:关于液滴和气泡振荡的粘性效应的纯粹非旋转理论

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摘要

In this paper, we apply two purely irrotational theories of the motion of a viscous fluid, namely, viscous potential flow (VPF) and the dissipation method to the problem of the decay of waves on the surface of a sphere. We treat the problem of the decay of small disturbances on a viscous drop surrounded by gas of negligible density and viscosity and a bubble immersed in a viscous liquid. The instantaneous velocity field in the viscous liquid is assumed to be irrotational. In VPF, viscosity enters the problem through the viscous normal stress at the free surface. In the dissipation method, viscosity appears in the dissipation integral included in the mechanical energy equation. Comparisons of the eigenvalues from VPF and the dissipation approximation with those from the exact solution of the linearized governing equations are presented. The results show that the viscous irrotational theories exhibit most of the features of the wave dynamics described by the exact solution. In particular, VPF and DM give rise to a viscous correction for the frequency that determines the crossover from oscillatory to monotonically decaying waves. Good to reasonable quantitative agreement with the exact solution is also shown for certain ranges of modes and dimensionless viscosity: For large viscosity and short waves, VPF is a very good approximation to the exact solution. For 'small' viscosity and long waves, the dissipation method furnishes the best approximation. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在本文中,我们将粘性流体的运动的两种纯非旋转理论,即粘性势流(VPF)和耗散方法应用于球体表面上的波衰减问题。我们处理在密度和粘度可忽略不计的气体以及浸入粘性液体中的气泡包围的粘性液滴上的小扰动衰减问题。粘性液体中的瞬时速度场被假定为非旋转的。在VPF中,粘度通过自由表面的粘性法向应力进入问题。在耗散方法中,粘度出现在机械能方程式所包含的耗散积分中。提出了VPF和耗散近似值与线性化控制方程精确解的特征值的比较。结果表明,粘性无旋理论具有精确解所描述的波浪动力学的大多数特征。特别是,VPF和DM对频率进行粘性校正,该频率确定了从振荡衰减波到单调衰减波的交叉点。对于某些模式范围和无因次粘度,还显示了与精确溶液的良好至合理的定量一致性:对于大粘度和短波,VPF非常精确地近似于精确溶液。对于“小”粘度和长波,耗散方法可提供最佳近似值。 (C)2007 Elsevier Ltd.保留所有权利。

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