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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - A single mode study of a quasi-geostrophic convection-driven dynamo model
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - A single mode study of a quasi-geostrophic convection-driven dynamo model

机译:APS-流体动力学APS部门第70届年会-事件-准地转对流驱动发电机模型的单模研究

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Planetary magnetic fields are thought to be the product of hydromagnetic dynamo action. For Earth, this process occurs within the convecting, turbulent and rapidly rotating outer core, where the dynamics are characterized by low Rossby, low magnetic Prandtl and high Rayleigh numbers. Progress in studying dynamos has been limited by current computing capabilities and the difficulties in replicating the extreme values that define this setting. Asymptotic models that embrace these extreme parameter values and enforce the dominant balance of geostrophy provide an option for the study of convective flows with actual relevance to geophysics. The quasi-geostrophic dynamo model (QGDM) is a multiscale, fully-nonlinear Cartesian dynamo model that is valid in the asymptotic limit of low Rossby number. We investigate the QGDM using a simplified class of solutions that consist of a single horizontal wavenumber which enforces a horizontal structure on the solutions. This single mode study is used to explore multiscale time stepping techniques and analyze the influence of the magnetic field on convection.
机译:行星磁场被认为是水磁发电机作用的产物。对于地球而言,此过程发生在对流,湍流和快速旋转的外核内,其动力学特征是低Rossby,低磁Prandtl和高瑞利数。当前的计算能力和复制定义此设置的极值的困难限制了研究动态的进展。包含这些极端参数值并实现地球运动的主要平衡的渐近模型为研究与地球物理学实际相关的对流提供了一种选择。拟地转发电机模型(QGDM)是一种多尺度,完全非线性的笛卡尔发电机模型,在低Rossby数的渐近极限内有效。我们使用简化的一类解决方案研究QGDM,该解决方案由单个水平波数组成,该水平波数在解决方案上强制采用水平结构。该单模研究用于探索多尺度时间步长技术,并分析磁场对流的影响。

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