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Linear and nonlinear instability in a cylindrical enclosure caused by a rotating magnetic field

机译:旋转磁场在圆柱外壳中引起的线性和非线性不稳定性

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Rotating magnetic fields generate a swirling motion in electrically conductive fluids. In previous theoretical and experimental studies this flow was found to be susceptible to non-normal nonlinear transition mechanisms, which are triggered by small perturbations. In this Brief Communication we present a numerical investigation of the transition in a closed cylindrical container. Depending on the magnetic Taylor number, three different scenarios have been identified: a single subcritical burst, a series of supercritical bursts and, at higher Taylor numbers, a sustained unsteady regime. In all three cases, the unsteady stages are governed by Taylor-Gortler vortices.(c) 2007 American Institute of Physics.
机译:旋转磁场在导电流体中产生旋转运动。在先前的理论和实验研究中,发现这种流动易受非正常非线性过渡机制的影响,该机制是由小扰动触发的。在本简报中,我们对封闭的圆柱形容器中的过渡过程进行了数值研究。根据磁泰勒数,已经确定了三种不同的情况:一个亚临界爆裂,一系列超临界爆裂以及在较高的泰勒数下持续的不稳定状态。在这三种情况下,不稳定阶段均由泰勒-戈特勒涡旋控制。(c)2007美国物理研究所。

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