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Effects of anisotropic diffusion on onset of rotating magnetoconvection in plane layer; stationary modes

机译:各向异性扩散对平面层旋转磁电阻起作的影响; 固定模式

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摘要

Turbulence?in the Earth's outer core not only increases all diffusive coefficients, but it can lead to their anisotropic properties. Therefore, the model of rotating magnetoconvection in horizontal plane layer rotating about vertical axis and permeated by homogeneous horizontal magnetic field, influenced by anisotropic diffusivities, viscosity and thermal diffusivity, is advanced by considering the magnetic diffusivity as anisotropic too. The case of full anisotropy, i.e. all coefficients anisotropic, is compared with both the case possessing isotropic diffusion coefficients and the case of partial anisotropy, i.e. mixed case with isotropic and anisotropic diffusive coefficients (viscosity and thermal diffusivity anisotropic and magnetic diffusivity isotropic). The existence and preference of instabilities is sensitive to all non-dimensional parameters, as well as on anisotropic parameter, the ratio of horizontal and vertical diffusivities. Two types of anisotropy, BM (introduced by Braginsky and Meytlis) and SA (stratification anisotropy) are studied. BM as well as SA were applied by ?oltis and Brestensky to the study of the partial anisotropy; this study is extended, in this paper, to full anisotropy cases (full SA and full BM) and it is shown that the style of convection given by the onset of stationary modes is more affected by anisotropic diffusivities in BM than in SA anisotropy. The important influence of strong anisotropies in the Earth's core dynamics is stressed.
机译:湍流?在地球的外部核心不仅增加了所有扩散系数,而且可以导致它们的各向异性特性。因此,通过考虑到各向异性的磁性扩散性,通过均匀水平磁场旋转围绕垂直轴的水平平面层旋转磁力检查和均匀水平磁场渗透的模型。与具有各向同性扩散系数的情况和部分各向异性的情况进行比较全部各向异性的情况,即所有系数各向异性,即,具有各向同性和各向异性扩散系数的混合案例(粘度和热扩散性各向异性和磁扩散性同向调位)。不稳定性的存在和偏好对所有非维度参数以及各向异性参数,水平和垂直扩散的比率敏感。研究了两种类型的各向异性,BM(由Braginsky和Meytlis引入)和SA(分层各向异性)。 BM以及SA应用于奥尔蒂斯和肆无忌惮的部分各向异性研究;本文延长了本文的全部各向异性案例(完全SA和全部BM),并表明静止模式发作给出的对流风格受到BM中各向异性扩散的影响而不是SA各向异性。强调了强大的各向异性在地球核心动态中的重要影响。

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