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Transition to subcritical turbulence in a tokamak plasma

机译:在托卡马克等离子体中过渡到亚临界湍流

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Tokamak turbulence, driven by the ion-temperature gradient and occurring in the presence of flow shear, is investigated by means of local, ion-scale, electrostatic gyrokinetic simulations (with both kinetic ions and electrons) of the conditions in the outer core of the Mega-Ampere Spherical Tokamak (MAST). A parameter scan in the local values of the ion-temperature gradient and flow shear is performed. It is demonstrated that the experimentally observed state is near the stability threshold and that this stability threshold is nonlinear: sheared turbulence is subcritical, i.e. the system is formally stable to small perturbations, but, given a large enough initial perturbation, it transitions to a turbulent state. A scenario for such a transition is proposed and supported by numerical results: close to threshold, the nonlinear saturated state and the associated anomalous heat transport are dominated by long-lived coherent structures, which drift across the domain, have finite amplitudes, but are not volume filling; as the system is taken away from the threshold into the more unstable regime, the number of these structures increases until they overlap and a more conventional chaotic state emerges. Whereas this appears to represent a new scenario for transition to turbulence in tokamak plasmas, it is reminiscent of the behaviour of other subcritically turbulent systems, e.g. pipe flows and Keplerian magnetorotational accretion flows.
机译:托卡马克湍流是由离子温度梯度驱动并在存在流动剪切的情况下发生的,它是通过局部,离子尺度,静电陀螺动力学模拟(包括动离子和电子)研究了外层核的条件。巨型安培球形托卡马克(MAST)。对离子温度梯度和流动剪切的局部值进行参数扫描。结果表明,实验观察到的状态接近稳定性阈值,并且该稳定性阈值是非线性的:剪切湍流是亚临界的,即系统对小扰动形式上是稳定的,但在初始扰动足够大的情况下,它会转变为湍流州。提出了这种过渡的方案并得到了数值结果的支持:接近阈值,非线性饱和状态和相关的异常传热由长寿命的相干结构控制,它们在整个域中漂移,具有有限的振幅,但没有体积填充随着系统从阈值带入更不稳定的状态,这些结构的数量会增加,直到它们重叠并出现更常规的混沌状态为止。尽管这似乎代表了在托卡马克等离子体中过渡到湍流的新情况,但它使人想起了其他亚临界湍流系统的行为。管道流量和开普勒磁旋转增生流量。

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