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Singularity dynamics in curvature collapse and jet eruption on a fluid surface

机译:流体表面曲率塌陷和喷发的奇异动力学

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摘要

Finite-time singularities—local divergences in the amplitude or gradient of a physical observable at a particular time—occur in a diverse range of physical systems. Examples include singularities capable of damaging optical fibres and lasers in nonlinear optical systems, and gravitational singularities associated with black holes. In fluid systems, the formation of finite-time singularities cause spray and air-bubble entrainment, processes which influence air-sea interaction on a global scale. Singularities driven by surface tension have been studied in the break-up of pendant drops and liquid sheets. Here we report a theoretical and experimental study of the generation of a singularity by inertial focusing, in which no break-up of the fluid surface occurs. Inertial forces cause a collapse of the surface that leads to jet formation; our analysis, which includes surface tension effects, predicts that the surface profiles should be describable by a single universal exponent. These theoretical predictions correlate closely with our experimental measurements of a collapsing surface singularity. The solution can be generalized to apply to a broad class of singular phenomena.
机译:有限时间奇异性(在特定时间可观察到的物理波幅或梯度的局部差异)发生在各种物理系统中。例子包括能够损坏非线性光学系统中的光纤和激光器的奇异性,以及与黑洞有关的引力奇异性。在流体系统中,有限时间奇异点的形成会导致喷雾和气泡夹带,这些过程会在全球范围内影响海海相互作用。在悬垂液滴和液体薄片的破裂中,已经研究了由表面张力驱动的奇异性。在这里,我们报告了通过惯性聚焦产生奇异点的理论和实验研究,其中没有发生流体表面的破裂。惯性力会导致表面塌陷,从而形成射流。我们的分析(包括表面张力效应)预测,表面轮廓应该由单个通用指数来描述。这些理论预测与我们对塌陷表面奇异性的实验测量结果密切相关。该解决方案可以推广到适用于广泛的奇异现象类别。

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