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Compressible Ekman-Hartmann boundary layers

机译:可压缩的Ekman-Hartmann边界层

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We consider the effect of compressibility on mixed Ekman-Hartmann boundary layers on an infinite plane (z = 0), in the presence of an external magnetic field oblique to the boundary. The aim is to investigate the influence of the magnetic pressure on the fluid density, and hence, via mass conservation, on the mass flow into or out of the boundary layer. We find that if the z-component of vorticity in the main flow, immediately above the boundary layer, is negative, then there is a competition between Ekman suction and the magnetic pressure effect. Indeed, as the magnetic field strength is increased, the magnetic pumping may overcome the Ekman suction produced by anti-cyclonic main flow vortices. Such a mechanism, based on the competition between these effects, may be of importance for understanding the dynamics of the magnetic field in stellar (or planetary) interiors. For the solar tachocline, we find that the analysed magnetic pressure effect is unlikely to play a significant role; however, we give examples of what changes in the assumed scalings would be necessary for the effect to become important.
机译:在存在倾斜于边界的外部磁场的情况下,我们考虑了可压缩性对无限平面(z = 0)上的混合Ekman-Hartmann边界层的影响。目的是研究电磁压力对流体密度的影响,因此,通过质量守恒,对流入或流出边界层的质量流的影响。我们发现,如果在边界层正上方的主流中,涡度的z分量为负,则埃克曼吸力与磁压力效应之间存在竞争。实际上,随着磁场强度的增加,磁力泵可以克服反气旋主流涡流产生的埃克曼吸力。基于这些效应之间的竞争,这种机制对于理解恒星(或行星)内部磁场的动力学可能很重要。对于太阳测速计,我们发现分析的磁压效应不太可能发挥重要作用。但是,我们给出了一些示例,说明了要使效果变得重要,需要对假定的缩放比例进行哪些更改。

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