Keim Nathan C
James Franck Institute and Department of Physics, University of Chicago, 929 E. 57th St., Chicago, Illinois 60637, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 May;83(5 Pt 2):056325. doi: 10.1103/PhysRevE.83.056325. Epub 2011 May 23.
The pinch-off of an air bubble from an underwater nozzle ends in a singularity with a remarkable sensitivity to a variety of perturbations. I report on experiments that break both the axial (i.e., vertical) and azimuthal symmetry of the singularity formation. The density of the inner gas influences the axial asymmetry of the neck near pinch-off. For denser gases, flow through the neck late in collapse changes the pinch-off dynamics. Gas density is also implicated in the formation of satellite bubbles. The azimuthal shape oscillations described by Schmidt et al. can be initiated by anisotropic boundary conditions in the liquid as well as with an asymmetric nozzle shape. I measure the n=3 oscillatory mode and observe the nonlinear, highly three-dimensional outcomes of pinch-off with large azimuthal perturbations. These are consistent with prior theory.
水下喷嘴处气泡的 pinch-off 以一种奇点结束,该奇点对各种扰动具有显著的敏感性。我报告了一些实验,这些实验打破了奇点形成的轴向(即垂直方向)和方位对称性。内部气体的密度会影响 pinch-off 附近颈部的轴向不对称性。对于密度较大的气体,坍缩后期通过颈部的流动会改变 pinch-off 动力学。气体密度也与卫星气泡的形成有关。施密特等人描述的方位形状振荡可以由液体中的各向异性边界条件以及不对称的喷嘴形状引发。我测量了 n = 3 的振荡模式,并观察到具有大方位扰动的 pinch-off 的非线性、高度三维的结果。这些与先前的理论一致。