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Stability Analysis of Non-Newtonian Rotational Flow with Hydromagnetic Effect

机译:非牛顿旋转流量与水磁效应的稳定性分析

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摘要

Stability of the magnetorheological rotational flow in the presence of a magnetic excitation in the tangential direction is examined. The conservation of mass and momentum equations for an isothermal Carreau fluid between coaxial cylinders are numerically solved while mixed boundary conditions are assumed. In the absence of magnetic excitation, the base flow loses its radial flow stability to the vortex structure at a critical Taylor number. The emergence of the vortices corresponds to the onset of a supercritical bifurcation. The Taylor vortices, in turn, lose their stability as the Taylor number reaches a second critical number corresponding to the onset of a Hopf bifurcation. The tangential magnetic field turns out to be a controlling parameter as it alters the critical points throughout the bifurcation diagram. Also, the effect of the Hartmann number, the Deborah number and the fluid elasticity on the flow parameters were investigated.
机译:研究了在切向方向上存在磁激励的磁体旋转流动的稳定性。在同轴滚筒之间的等温室内容物的质量和动量方程的守恒在数量上进行了数量地解决,而假设混合边界条件。在没有磁激励的情况下,基础流动在临界泰勒数处失去其径向流动稳定性到涡流结构。涡流的出现对应于超临界分叉的开始。圆锥形涡流又失去了它们的稳定性,因为泰勒数达到了与跳跃分叉的发作相对应的第二临界数。切向磁场结果是控制参数,因为它在整个分叉图中改变了关键点。此外,研究了Hartmann号,Deborah数量和流体弹性对流动参数的影响。

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