首页> 外文期刊>The European physical journal, E. Soft matter >Magneto-vibratory separation of glass and bronze granular mixtures immersed in a paramagnetic liquid
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Magneto-vibratory separation of glass and bronze granular mixtures immersed in a paramagnetic liquid

机译:浸泡在顺磁液体中的玻璃和青铜颗粒混合物的磁振动分离

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摘要

A fluid-immersed granular mixture may spontaneously separate when subjected to vertical vi- bration, separation occurring when the ratio of particle inertia to fluid drag is sufficiently different between the component species of the mixture. Here, we describe how fluid-driven separation is influenced by magneto-Archimedes buoyancy, the additional buoyancy force experienced by a body immersed in a para- magnetic fluid when a strong inhomogeneous magnetic field is applied. In our experiments glass and bronze mixtures immersed in paramagnetic aqueous solutions of MnCl2 have been subjected to sinusoidal vertical vibration. In the absence of a magnetic field the separation is similar to that observed when the interstitial fluid is water. However, at modest applied magnetic fields, magneto-Archimedes buoyancy may balance the inertia/fluid-drag separation mechanism, or it may dominate the separation process. We identify the vibra- tory and magnetic conditions for four granular configurations, each having distinctive granular convection. Abrupt transitions between these states occur at well-defined values of the magnetic and vibrational pa- rameters. In order to gain insight into the dynamics of the separation process we use computer simulations based on solutions of the Navier-Stokes’ equations. The simulations reproduce the experimental results revealing the important role of convection and gap formation in the stability of the different states.
机译:当垂直振动时,浸入液体的颗粒混合物会自发分离,当颗粒的惯性与流体阻力之比在混合物的各组分之间足够不同时,就会发生分离。在这里,我们描述了磁-阿基米德浮力如何影响流体驱动的分离,当施加强非均匀磁场时,人体浸没在顺磁流体中会产生额外的浮力。在我们的实验中,浸入MnCl2顺磁性水溶液中的玻璃和青铜混合物已受到正弦垂直振动的影响。在没有磁场的情况下,这种分离类似于组织液为水时的分离。但是,在施加的磁场较小的情况下,磁-阿基米德浮力可能会平衡惯性/流体阻力分离机制,或者可能会主导分离过程。我们确定了四种颗粒状配置的振动和磁性条件,每种都具有独特的颗粒对流。这些状态之间的突然转变发生在磁参数和振动参数的明确定义的值处。为了深入了解分离过程的动力学过程,我们使用了基于Navier-Stokes方程解的计算机模拟。模拟重现了实验结果,揭示了对流和间隙形成在不同状态的稳定性中的重要作用。

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