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Energy budget in decaying compressible MHD turbulence

机译:腐烂可压缩MHD湍流的能量预算

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摘要

We study the decay of compressible magnetohydrodynamic (MHD) turbulence, emphasizing exchanges of energy between compressive and incompressive kinetic energies, magnetic energy, and thermal energy. A recently developed high order finite difference code is employed for compressible runs with a Mach number up to 2. Varying the nature of the initial conditions (magnitudes of velocity and magnetic fluctuations), and initial Mach numbers permits examination of various dynamical regimes characterized here by the changes between different energy reservoirs. Acoustic waves are responsible for the oscillatory exchange between compressive kinetic and thermal energy through the pressure dilatation term. The results indicate that exchange between kinetic and magnetic energy is dominated by interactions involving the solenoidal velocity. Several systematic rapid adjustments are found to be reproducible with simple scalings derived from the empirical data.
机译:我们研究可压缩磁流体动力学(MHD)湍流的衰减,强调压缩和不压缩动能、磁能和热能之间的能量交换。最近开发的高阶有限差分程序用于马赫数高达2的可压缩运行。改变初始条件的性质(速度和磁涨落的大小)和初始马赫数允许检查这里所描述的各种动态状态,这些动态状态的特征是不同能量储层之间的变化。声波通过压力膨胀项负责压缩动能和热能之间的振荡交换。结果表明,动能和磁能之间的交换主要由涉及螺线管速度的相互作用控制。通过从经验数据得出的简单标度,发现几个系统性快速调整是可重复的。

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