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首页> 外文期刊>The European physical journal, E. Soft matter >Oscillatory patterns in a rotating aqueous suspension
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Oscillatory patterns in a rotating aqueous suspension

机译:旋转水悬浮液中的振荡模式

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Suspensions of granular material in glycerin-water mixtures agitated in horizontally aligned rotating tubes show a whole variety of patterns. The stationary pattern of a homogeneous distribution and a chain of rings have been investigated before. Here we report on two types of oscillatory states in the same system. For a certain range of the rotation frequency and sufficiently high viscosity traveling waves propagate with constant velocity back and forth along the tube in an almost homogeneous distribution of sedimenting particles. The transition from a stationary to the traveling-wave state is found to be an imperfect supercritical bifurcation. The dependence of the wave length and speed on the tube's rotation frequency and the dynamic viscosity of the fluid are determined. Experiments with low viscosities show no traveling waves but low-frequency oscillations, when the previously known chain of rings undergoes a secondary instability.
机译:在水平排列的旋转管中搅动的甘油-水混合物中的颗粒状物质悬浮液表现出各种各样的模式。之前已经研究了均匀分布的固定模式和环链。在这里,我们报告同一系统中的两种振荡状态。对于一定范围的旋转频率和足够高的粘度,行波以恒定的速度沿管子来回传播,沉降颗粒几乎均匀分布。发现从静止波到行波状态的过渡是不完善的超临界分叉。确定了波长和速度对管旋转频率和流体动态粘度的依赖性。当先前已知的环链经历第二次不稳定时,低粘度的实验表明没有行波而是低频振荡。

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