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MHD dynamo simulation using the GeoFEM platform--verification by the dynamo benchmark test

机译:使用GeoFEM平台进行MHD发电机仿真-通过发电机基准测试进行验证

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We verified a magnetohydrodynamic (MHD) simulation code in a rotating spherical shell using the parallel finite element method by comparing with the dynamo benchmark test by Christensen et al. ["A numerical dynamo benchmark", Physics of Earth and Planetary Interiors, 128 (2001), 25-34]. We performed the non-magnetic case and dynamo with the insulated inner core case of the benchmark test. The results show that all results of the MHD case have <5% differences from the benchmark solutions. Only the drift frequency in the non-magnetic case duffers by more. This discrepancy is attributed to the small amplitude of the drift frequency in the non-magnetic case. We conclude that the present simulation code can represent dynamics and behavior of convection pattern and magnetic field although the present simulation model has some limitations such as the finite size of simulation domain.
机译:通过与Christensen等人的发电机基准测试进行比较,我们使用平行有限元方法验证了旋转球形壳体中的磁流体动力学(MHD)仿真代码。 [“数字发电机基准”,《地球与行星内部物理》,第128期(2001年),第25-34页。我们使用基准测试的绝缘内芯外壳进行了非磁性外壳和发电机。结果表明,MHD案例的所有结果与基准解决方案的差异均小于5%。在非磁性情况下,只有漂移频率的影响更大。这种差异归因于非磁性情况下漂移频率的小幅度。我们得出的结论是,尽管当前的仿真模型存在一些局限性,例如有限的仿真域大小,但本仿真代码仍可以表示对流模式和磁场的动力学和行为。

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