Hidalgo C, Pedrosa M A, García L, Ware A
Laboratorio Nacional de Fusion, Euratom-Ciemat, 28040 Madrid, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Dec;70(6 Pt 2):067402. doi: 10.1103/PhysRevE.70.067402. Epub 2004 Dec 20.
The link between the development of sheared flows and the structure of turbulence has been investigated in the plasma boundary region of the TJ-II stellarator. The development of the naturally occurring velocity shear layer requires a minimum plasma density. Near this critical density, the level of edge turbulent transport and the turbulent kinetic energy significantly increases in the plasma edge. The resulting shearing rate in the phase velocity of fluctuations is comparable to the one required to trigger a transition to improved confinement regimes with reduction of edge turbulence, suggesting that spontaneous sheared flows and fluctuations keep themselves near marginal stability. These findings provide the experimental evidence of coupling between sheared flows development and increasing in the level of edge turbulence. The experimental results are consistent with the expectations of second-order transition models of turbulence-driven sheared flows.
在TJ-II仿星器的等离子体边界区域,研究了剪切流的发展与湍流结构之间的联系。自然形成的速度剪切层的发展需要最低等离子体密度。接近这个临界密度时,等离子体边缘的边缘湍流输运水平和湍动能会显著增加。波动相速度中产生的剪切率与触发向改善约束模式转变以减少边缘湍流所需的剪切率相当,这表明自发剪切流和波动保持在接近边际稳定性的状态。这些发现为剪切流发展与边缘湍流水平增加之间的耦合提供了实验证据。实验结果与湍流驱动剪切流的二阶转变模型的预期一致。