Terra-Nova Filipe, Amit Hagay
Nantes Université, Univ Angers, Le Mans Université, CNRS, Laboratoire de Planétologie et Géosciences, LPG UMR 6112, 44000, Nantes, France.
Sci Rep. 2024 Apr 26;14(1):9639. doi: 10.1038/s41598-024-59849-z.
Systematic studies of numerical dynamo simulations reveal that the transition from dipole-dominated non-reversing fields to models that exhibit reversals occurs when inertial effects become strong enough. However, the inertial force is expected to play a secondary role in the force balance in Earth's outer core. Here we show that reversals in numerical dynamo models with heterogeneous outer boundary heat flux inferred from lower mantle seismic anomalies appear when the amplitude of heat flux heterogeneity is increased. The reversals are triggered at regions of large heat flux in which strong small-scale inertial forces are produced, while elsewhere inertial forces are substantially smaller. When the amplitude of heat flux heterogeneity is further increased so that in some regions sub-adiabatic conditions are reached, regional skin effects suppress small-scale magnetic fields and the tendency to reverse decreases. Our results reconcile the need for inertia for reversals with the theoretical expectation that the inertial force remains secondary in the force balance. Moreover, our results highlight a non-trivial non-monotonic behavior of the geodynamo in response to changes in the amplitude of the core-mantle boundary heat flux heterogeneity.
对数值发电机模拟的系统研究表明,当惯性效应变得足够强时,会发生从偶极主导的非反转场到表现出反转的模型的转变。然而,惯性力预计在地球外核的力平衡中起次要作用。我们在此表明,根据下地幔地震异常推断出具有非均匀外边界热通量的数值发电机模型中的反转,是在热通量非均匀性的幅度增加时出现的。反转在产生强大的小尺度惯性力的大热通量区域触发,而在其他地方惯性力则小得多。当热通量非均匀性的幅度进一步增加,以至于在某些区域达到亚绝热条件时,区域趋肤效应会抑制小尺度磁场,反转趋势降低。我们的结果调和了反转对惯性的需求与惯性力在力平衡中仍居次要地位的理论预期。此外,我们的结果突出了地球发电机响应核幔边界热通量非均匀性幅度变化时的一种非平凡的非单调行为。