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Electrohydrodynamic instabilities and orientation of dielectric ellipsoids in low-conducting fluids - art. no. 016301

机译:低导流体中电椭圆体的电流体动力学不稳定性和取向-艺术。没有。 016301

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摘要

We study the dynamics of an ellipsoidal particle in a weakly conducting dielectric liquid when submitted to a de electric field. At low field intensities, the particle long axis is aligned in the field direction. When the field strength is increased, we show that, depending on the initial orientation of the particle, there exist two stable orientations: the one with the long axis parallel to the field direction remains possible while a spinning state with the long axis perpendicular to the field appears. This last striking orientation is due to the finite Maxwell-Wagner polarization relaxation time. For sufficiently high field intensities, each state loses its stability and the particle dynamics becomes chaotic. Those conclusions from the theoretical model are supported by experimental observations. [References: 18]
机译:我们研究了弱电场介质中椭圆形粒子在受到电场作用时的动力学特性。在低场强下,粒子长轴在场方向上对齐。当场强增加时,我们表明,根据粒子的初始方向,存在两种稳定的方向:长轴与场方向平行的方向仍然可能,而长轴与场方向垂直的旋转状态仍然可能。字段出现。最后的撞击方向是由于有限的Maxwell-Wagner极化弛豫时间所致。对于足够高的场强,每个状态都会失去其稳定性,粒子动力学会变得混乱。理论模型的这些结论得到了实验观察的支持。 [参考:18]

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