论文标题

大幅度纵向振荡和耗尽

Simulations of prominence eruption preceded with large amplitude longitudinal oscillations and draining

论文作者

Fan, Yuhong

论文摘要

我们提出了从准平衡到冠状彩带下形成巨大扭曲的冠状通量绳的喷发的磁性水力动力学(MHD)模拟。我们已经比较了有或没有突出凝结形成的情况,以及呈突出凝结的情况,但我们人为地启动了突出性的排水。我们发现,突出的重量对通量绳的稳定性具有显着影响,并且可以显着增加平衡高度的损失。可以通过启动突出质量的排水来使通量绳更早地爆发。我们还进行了一个模拟,在准静态阶段激发了突出性的大幅度纵向振荡。我们发现,沿磁场线的重力力是振荡的主要恢复力,尽管``摆模型'',尽管振荡周期比从模型中估计的振荡周期高(约为10%至40%),因为在振动期间野外线倾角的动态变形。还发现,与较浅的下部相比,较深倾角的下部的振荡周期在较深的下部的下部略小。大约2-3个时期后,振荡迅速降低,随后是突出的排泄,最终突出的爆发。但是,与没有案例相比,我们没有发现随着突出性振荡的激发而显着提高突出性排泄和早期发作。

We present magnetohydrodynamic (MHD) simulations of the evolution from quasi-equilibrium to eruption of a prominence-forming twisted coronal flux rope under a coronal streamer. We have compared the cases with and without the formation of prominence condensations, and the case where prominence condensations form but we artificially initiate the draining of the prominence. We find that the prominence weight has a significant effect on the stability of the flux rope, and can significantly increase the loss-of-equilibrium height. The flux rope can be made to erupt earlier by initiating draining of the prominence mass. We have also performed a simulation where large amplitude longitudinal oscillations of the prominence are excited during the quasi-static phase. We find that the gravity force along the magnetic field lines is the major restoring force for the oscillations, in accordance with the ``pendulum model'', although the oscillation periods are higher (by about 10% to 40%) than estimated from the model because of the dynamic deformation of the field line dips during the oscillations. The oscillation period is also found to be slightly smaller for the lower part of the prominence in the deeper dips compared to the upper part in the shallower dips. The oscillations are quickly damped out after about 2-3 periods and are followed by prominence draining and the eventual eruption of the prominence. However we do not find a significant enhancement of the prominence draining and earlier onset of eruption with the excitation of the prominence oscillations compared to the case without.

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