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Tayler instability in liquid metal columns and liquid metal batteries

机译:液态金属柱和液态金属电池中的泰勒不稳定性

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摘要

In this paper we investigate the Tayler instability in an incompressible, viscous and resistive liquid metal column and in a model of a liquid metal battery (LMB). Detailed comparisons between theory and numerics, both in linear and nonlinear regimes, are performed. We identify the timescale that is well adapted to the quasi-static (QS) regime and find the range of Hartmann numbers where this approximation applies. The scaling law Re similar to Ha(2) for the amplitude of the Tayler destabilized flow is explained using a weakly nonlinear argument. We calculate a critical electrolyte height above which the Tayler instability is too weak to disrupt the electrolyte layer in a LMB. Applied to present day Mg-based batteries, this criterion shows that short circuits can occur only in very large batteries. Finally, preliminary results demonstrate the feasibility of direct numerical multiphase simulations of the Tayler instability in a model battery.
机译:在本文中,我们研究了不可压缩,粘性和电阻性液态金属柱以及液态金属电池(LMB)模型中的泰勒不稳定性。进行了线性和非线性两种情况下理论与数值之间的详细比较。我们确定了非常适合准静态(QS)体制的时间尺度,并找到了适用这种近似方法的Hartmann数的范围。使用弱非线性参数解释了泰勒不稳定流幅值的类似于Ha(2)的缩放定律Re。我们计算出临界电解质高度,在该临界电解质高度以上,泰勒不稳定性太弱而无法破坏LMB中的电解质层。应用于当今的镁基电池,该标准表明短路仅会在非常大的电池中发生。最后,初步结果证明了在模型电池中进行泰勒不稳定性直接数值多相仿真的可行性。

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