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The stability of ferrofluid flow in a vertical layer subject to lateral heating and horizontal magnetic field

机译:受侧向加热和水平磁场影响的垂直层中铁磁流体的稳定性

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摘要

We use the Langevin law of magnetization to study the linear stability of a convective flow in a flat vertical layer of ferrofluid subject to a transverse temperature gradient and a uniform magnetic field. The stability of the flow against planar, spiral and three-dimensional perturbations is examined, and the stability boundaries and characteristics of critical disturbances are determined. The competition between the monotonic mode and two types of wave modes is analyzed taking into account the properties of the fluid (magnetic susceptibility and Prandtl number) and the magnetic field strength. The domain of parameters where the oscillatory thermomagnetic wave instability exists is found.
机译:我们使用朗格万夫磁化定律研究在横向温度梯度和均匀磁场作用下,铁磁流体垂直平面中对流的线性稳定性。检验了流动对平面,螺旋和三维扰动的稳定性,并确定了临界扰动的稳定性边界和特征。考虑流体的性质(磁化率和普朗特数)和磁场强度,分析了单调模式和两种波模式之间的竞争。找到存在振荡热电磁波不稳定性的参数域。

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