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首页> 外文期刊>The Astrophysical journal >Wave Pressure and Energy Cascade Rate of Kink Waves Computed with Els?sser Variables
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Wave Pressure and Energy Cascade Rate of Kink Waves Computed with Els?sser Variables

机译:用els计算的扭结波的波浪压力和能量级联速率?sser变量

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Numerical simulations have revealed a new type of turbulence of unidirectional waves in a plasma that is perpendicularly structured, named uniturbulence . For this new type of turbulence, the transverse structuring modifies the upward propagating wave to have both Els?sser variables, leading to the well-known perpendicular cascade. In this paper, we study an analytical description of the nonlinear evolution of kink waves in a cylindrical flux tube that are prone to uniturbulence. We show that they lead to a nonlinear cascade for both propagating and standing waves. We calculate explicit expressions for the wave pressure and energy cascade rate. The computed damping rate depends on the density contrast of the flux tube and the background plasma and is inversely proportional to the amplitude of the kink wave. The dependence on the density contrast shows that it plays a role especially in the lower solar corona. These expressions may be added in Alfvén wave driven models of the solar atmosphere (such as the Alfvén Wave Solar Model (AWSOM)), modifying it to UAWSOM (Uniturbulence and the Alfvén Wave Solar Model).
机译:数值模拟已经揭示了一种垂直结构的等离子体中的单向波的新类型的湍流,其命名为单位九方。对于这种新型的湍流,横向结构改变向上传播波以使两个els?SSER变量,导致众所周知的垂直级联。在本文中,我们研究了在易于释布的圆柱形通量管中的扭结波的非线性演化的分析描述。我们表明它们导致非线性级联,用于传播和站立波。我们计算波浪压力和能量级联速率的显式表达式。计算的阻尼速率取决于磁通管和背景等离子体的密度对比度,并且与扭结波的幅度成反比。对密度的依赖性表明它尤其在较低的太阳能电晕中起作用。可以在太阳能大气的Alfvén波驱动模型中添加这些表达式(例如Alfvén波太阳能模型(AWSOM)),将其修改为UAWSOM(单机摇动和ALFVÉN波太阳能模型)。

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