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首页> 外文期刊>Journal of Computational and Applied Mathematics >Boundary layer instability at the top of the Earth's outer core
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Boundary layer instability at the top of the Earth's outer core

机译:地球外核顶部的边界层不稳定性

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We investigate the instability of mixed Ekman–Hartmann boundary layers arising in rotating incompressible magnetohydrodynamics flows in a parameter regime relevant to the Earth liquid core. Relying on the small depth of the boundary layer, we perform a local study in a half-space at a given co-latitude θ ≠ π/2, and assume a mean dipolar axial magnetic field with internal sources (the geodynamo). Instabilities are driven, for high enough Reynolds number, by the quadratic term in the momentum equation. Nonlinear stability can be proven using energy methods in the neighborhood of the poles (Nonlinearity 12 (2) (1999) 181). Next, following the work of Lilly (J. Atmos. Sci. 23 (1966) 481), we restrict our analysis to the linear growth phase. We describe the dependence of the critical Reynolds number in terms of θ and Elsasser number (measuring the relative strength of Lorentz and Coriolis forces). It turns out that no matter how large the Elsasser number is, there exists a critical band centered on the equator in which instabilities can occur. For geophysically relevant values of parameters, this band could extend as far as 45° away from the equator. This establishes the possibility of boundary layer instabilities near the Earth core-mantle boundary (CMB). We finally present a first attempt of interaction with field maps at the CMB and core flows derived from the secular variation of the field, and discuss the sensitivity of the instability onset not only on the boundary layer Reynolds number, but also on the direction of the flow.
机译:我们研究了与地球液态核有关的参数体系中旋转不可压缩的磁流体动力学流动中产生的混合Ekman–Hartmann边界层的不稳定性。依靠边界层的小深度,我们在给定的共纬度θ≠π/ 2的半空间内进行局部研究,并假设内部源(大地发电机)具有平均双极轴向磁场。对于足够高的雷诺数,通过动量方程中的二次项来驱动不稳定性。非线性稳定性可以使用两极附近的能量方法来证明(非线性12(2)(1999)181)。接下来,遵循礼来公司的工作(J. Atmos。Sci。23(1966)481),我们将分析限制在线性增长阶段。我们根据θ和Elsasser数(测量洛伦兹力和科里奥利力的相对强度)来描述临界雷诺数的依赖性。事实证明,无论Elsasser数有多大,都存在一个以赤道为中心的临界带,在其中可能会发生不稳定性。对于与地球物理相关的参数值,该波段可以从赤道延伸至45°。这就确定了地心-地幔边界(CMB)附近边界层不稳定的可能性。我们最终提出了与CMB处的场图和源自场的长期变化的核心流相互作用的首次尝试,并讨论了不稳定开始的敏感性,不仅在边界层雷诺数上,而且还在方向上流。

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