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Threshold for sheared flow and turbulence development in the TJ-II stellarator

机译:TJ-II恒星分离器中剪切流和湍流发展的阈值

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The influence of plasma density and edge gradients on the development of perpendicular sheared flow has been investigated in the plasma edge region of the TJ-II stellarator. The development of the naturally occurring velocity shear layer requires a minimum plasma density. Experimental findings have shown that there is a coupling between the onset of sheared flow development and an increase in the level of plasma edge turbulence; once sheared flow is fully developed the level of fluctuations and turbulent transport slightly decreases whereas edge gradients and plasma density increases. Electron density profiles show a broadening evolution as density increases above the critical value where sheared flow is developed, while the temperature profile remains similar, reflecting the strong impact of plasma density in the global confinement scaling. Furthermore, the shearing rate of the spontaneous sheared flow turns out to be close to the one needed to trigger a transition to improved confinement regimes. Density ramp experiments show, within the experimental uncertainty, no evidence of hysteresis during the spontaneous shear development. Power modulation, in the proximity of the critical plasma density, allows the characterization of plasma potential and electric field relaxation during the transition. The present results have a direct impact on the understanding of the physics mechanisms underlying the generation of critical sheared flow, pointing to the important role of turbulent driven flow.
机译:在TJ-II恒星发生器的等离子体边缘区域中,研究了等离子体密度和边缘梯度对垂直剪切流发展的影响。自然产生的速度剪切层的发展需要最小的等离子体密度。实验结果表明,在剪切流发展的开始与血浆边缘湍流水平的增加之间存在耦合。一旦完全形成剪切流,波动和湍流传输的水平将略微降低,而边缘梯度和等离子体密度将增加。电子密度分布图显示,当密度增加到超过临界值(在发生剪切流的情况下)时,电子密度分布范围逐渐扩大,而温度分布图保持相似,这反映了等离子体密度在整体限制尺度方面的强大影响。此外,自发剪切流的剪切速率被证明接近触发过渡到改进的约束状态所需的剪切速率。密度斜率实验显示,在实验不确定性范围内,在自发剪切过程中没有磁滞现象的证据。在临界等离子体密度附近的功率调制允许表征过渡期间的等离子体电势和电场弛豫。目前的结果直接影响了对产生临界剪切流的物理机制的理解,指出了湍流驱动流的重要作用。

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