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Nature Of Transport Across Sheared Zonal Flows In Electrostatic Ion-temperature-gradient gyrokinetic Plasma Turbulence

机译:静电离子温度梯度回旋动力学等离子湍流中横切带流的运输性质

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摘要

It is shown that the usual picture for the suppression of turbulent transport across a stable sheared flow based on a reduction of diffusive transport coefficients is, by itself, incomplete. By means of toroidal gyrokinetic simulations of electrostatic, collisionless ion-temperature-gradient turbulence, it is found that the nature of the transport is altered fundamentally, changing from diffusive to anticorrelated and subdiffusive. Additionally, whenever the flows are self-consistently driven by turbulence, the transport gains an additional non-Gaussian character. These results suggest that a description of transport across sheared flows using effective diffusivities is oversimplified.
机译:结果表明,基于扩散输运系数的降低,抑制湍流在稳定的剪切流中输运的通常情况是不完整的。通过对静电,无碰撞离子温度梯度湍流的环面动力学模拟,发现传输的本质发生了根本性的变化,从扩散性变为反相关性和亚扩散性。另外,每当流动被湍流自洽驱动时,传输都会获得额外的非高斯性。这些结果表明,使用有效扩散率对横穿剪切流的运输的描述被简化了。

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