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Mode-space energy distribution in instability-driven plasma turbulence

机译:不稳定驱动的等离子体湍流中的模式空间能量分布

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Energy transfer to damped modes in gyrokinetic ion temperature gradient driven turbulence is studied to understand the transfer dynamics and find scaling representations for the heavily populated mode space. Proper orthogonal and linear eigenmode decompositions are introduced and examined to assess whether modes are well-resolved and what scales they encompass. It is observed that damped modes across a range of inhomogeneous scales receive energy simultaneously and directly from the unstable mode, constituting a form of parallel transfer, distinct from the serial mode-to-mode transfer of the wavenumber cascade of hydrodynamic turbulence. Controlling for modes that are well resolved and labeling the modes of the linear decomposition in order of damping rate, energy transfer in the mode space satisfies an equipartition of the energy dissipation rate, leading to a simple rule for the distribution of energy in the space of damped modes. Energy dissipation rate equipartition is the form that the canonical nonlinear invariance of energy transfer assumes in a dissipation range with parallel rather than serial transfer. (C) 2014 AIP Publishing LLC.
机译:研究了在动能离子温度梯度驱动的湍流中能量向阻尼模的传递,以了解传递动力学并找到人口密集模态空间的比例表示。引入并检查了正确的正交和线性本征模分解,以评估模是否得到了很好的分解以及它们包含的比例。可以观察到,在不均匀尺度范围内的阻尼模态同时直接从不稳定模态接收能量,构成了平行传递的形式,这与流体动力湍流波数级联的逐模传递不同。控制好分解的模式并按照阻尼率的顺序标记线性分解的模式,模式空间中的能量转移满足能量耗散率的均等分配,从而得出能量在空间中的分布的简单规则阻尼模式。能量耗散率等分是能量转移的典型非线性不变性假设在具有并行而非串行转移的耗散范围内的形式。 (C)2014 AIP Publishing LLC。

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