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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Computational study of impulsively generated standing slow acoustic waves in a solar coronal loop
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Computational study of impulsively generated standing slow acoustic waves in a solar coronal loop

机译:太阳日冕环中脉冲产生的驻波慢声波的计算研究

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摘要

We numerically investigated standing slow acoustic waves impulsively excited in a solar coronal loop by gas pressure and mass density perturbations in one-dimensional space. The corresponding computer model is described by the hydrodynamic equations that are solved numerically by means of the so-called flux limiters methods on uniformly structured mesh. We discuss the fundamental mode and the first harmonic mode which are generated in dependence on position of the initial perturbation in the numerical box. We show how the standing slow acoustic waves are generated in the corona, where they are trapped in space between two dense layers as in the resonator, and how their energy leaks from the corona to the dense layers. We found that this leakage increases with the decrease of the density jump at the transition region. We also studied the case when the perturbation is initiated at the transition region. We found that even in this case the standing wave is formed, but their energetics is influenced by the evaporation of the plasma from the transition region into the corona.
机译:我们对一维空间中的气压和质量密度扰动进行了数值研究,研究了在太阳日冕环中脉冲激发的驻波慢声。相应的计算机模型由流体力学方程式描述,该流体力学方程式通过在均匀结构的网格上通过所谓的通量限制器方法进行数值求解。我们讨论了根据数字框中初始扰动的位置生成的基本模式和一次谐波模式。我们展示了如何在电晕中产生站立的慢声波,如何将它们滞留在共振器中两个密集层之间的空间中以及它们如何从电晕泄漏到密集层。我们发现,这种泄漏随着过渡区域密度跳跃的减小而增加。我们还研究了在过渡区域启动扰动的情况。我们发现即使在这种情况下也形成了驻波,但是它们的能量受等离子体从过渡区到电晕的蒸发的影响。

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