论文标题

对土星上的发电机,区域喷气机和涡流的全局模拟

A Global Simulation of the Dynamo, Zonal Jets, and Vortices on Saturn

论文作者

Yadav, Rakesh Kumar, Cao, Hao, Bloxham, Jeremy

论文摘要

星球土星中的流体动力学产生了交替的东西方喷气流,大型旋风和反气旋涡流以及偶极优势磁场,该磁场对行星旋转轴高度轴对称。以自洽的方式对这些特征进行建模对于理解土星内部和气氛的动态至关重要。在这里,我们报告了球形外壳中湍流的高分辨率发电机模拟,该壳首次同时产生这些功能。至关重要的模型成分是一种长高的稳定分层层(SSL),夹在深金属氢层之间和外部低导性分子层之间,在某些深度处金属氢内部的氦气溶解度有限。该模型自发地产生了极性旋风,并在分子层中产生明显的低和中纬射流活动。赤道低纬度射流部分渗透到SSL中并与磁场相互作用。这有助于将围绕旋转轴的磁场轴对称,并将某些poloidal磁场转换为环形磁场,这些磁场显示为围绕较深发电机区域的两个全局磁能环。该模拟还模仿了Cassini Grand Finale测量所推断的土星磁能谱中第五个球形谐波中的独特倾角。我们的模型突出了SSL在塑造巨型行星的流体动力学和磁性特征中的作用,如土星在土星上的例子。

The fluid dynamics in planet Saturn gives rise to alternating east-west jet streams, large cyclonic and anticyclonic vortices, and a dipole-dominant magnetic field which is highly axisymmetric about the planetary rotation axis. Modelling these features in a self-consistent manner is crucial for understanding the dynamics of Saturn's interior and atmosphere. Here we report a turbulent high-resolution dynamo simulation in a spherical shell which produces these features simultaneously for the first time. A crucial model ingredient is a long-hypothesised stably stratified layer (SSL), sandwiched between a deep metallic hydrogen layer and an outer low-conductivity molecular layer, born out of limited solubility of Helium inside metallic Hydrogen at certain depths. The model spontaneously produces polar cyclones and significant low and mid latitude jet stream activities in the molecular layer. The off-equatorial low-latitude jet streams partially penetrate into the SSL and interact with the magnetic field. This helps to axisymmetrize the magnetic field about the rotation axis and convert some of the poloidal magnetic field to toroidal field, which appears as two global magnetic energy rings surrounding the deeper dynamo region. The simulation also mimics a distinctive dip in the fifth spherical harmonic in Saturn's magnetic energy spectrum as inferred from the Cassini Grand Finale measurements. Our model highlights the role of an SSL in shaping the fluid dynamical and magnetic features of giant planets, as exemplified at Saturn.

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