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Surface wave pattern formation in a cylindrical container

机译:圆柱形容器中的表面波图案形成

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Surface waves are excited by mechanical vibration of a cylindrical container having an air/water interface pinned at the rim, and the dynamics of pattern formation is analysed from both an experimental and theoretical perspective. The wave conforms to the geometry of the container and its spatial structure is described by the mode number pair (n, l) that is identified by long exposure time white light imaging. A laser light system is used to detect the surface wave frequency, which exhibits either a (i) harmonic response for low driving amplitude edge waves or (ii) sub-harmonic response for driving amplitude above the Faraday wave threshold. The first 50 resonant modes are discovered. Control of the meniscus geometry is used to great effect. Specifically, when flat, edge waves are suppressed and only Faraday waves are observed. For a concave meniscus, edge waves are observed and, at higher amplitudes, Faraday waves appear as well, leading to complicated mode mixing. Theoretical predictions for the natural frequency of surface oscillations for an inviscid liquid in a cylindrical container with a pinned contact line are made using the Rayleigh-Ritz procedure and are in excellent agreement with experimental results.
机译:表面波是由在边缘固定有空气/水界面的圆柱形容器的机械振动激发的,并从实验和理论角度分析了图案形成的动力学。波符合容器的几何形状,其空间结构由模式数对(n,l)描述,模式数对通过长曝光时间白光成像识别。激光系统用于检测表面波频率,其表现为(i)低驱动振幅边缘波的谐波响应,或(ii)驱动振幅高于法拉第波阈值的亚谐波响应。发现了前50个共振模式。弯月面几何形状的控制非常有效。具体来说,当平坦时,边缘波被抑制,只观察到法拉第波。对于凹面弯月面,可以观察到边缘波,在较高的振幅下,也会出现法拉第波,从而导致复杂的模式混合。本文用瑞利-里兹方法对带有固定接触线的圆柱形容器内无粘液体表面振动的固有频率进行了理论预测,并与实验结果非常吻合。

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