Center for Momentum Transport and Flow Organization, University of California at San Diego, California 92093, USA.
Phys Rev Lett. 2012 Jun 15;108(24):245001. doi: 10.1103/PhysRevLett.108.245001. Epub 2012 Jun 11.
The absolute rate of nonlinear energy transfer among broadband turbulence, low-frequency zonal flows (ZFs) and geodesic acoustic modes (GAMs) was measured for the first time in fusion-grade plasmas using two independent methods across a range of heating powers. The results show that turbulent kinetic energy from intermediate frequencies (20-80 kHz) was transferred into ZFs and GAMs, as well as into fluctuations at higher frequencies (>80 kHz). As the heating power was increased, the energy transfer from turbulence into GAMs and the GAM amplitudes increased, peaked and then decreased, while the energy transfer into the ZFs and the ZFs themselves increased monotonically with heating power. Thus there exists a competition between ZFs and GAMs for the transfer of turbulent energy, and the transfer into ZFs becomes dominant as the heating power is increased. The poloidal-radial Reynolds stress and the mean radial electric field profiles were also measured at different heating powers and found to be consistent with the energy transfer measurement. The results suggest that ZFs play an important role in the low-to-high (L-H) plasma confinement transition.
首次在聚变级等离子体中使用两种独立的方法,在一系列加热功率下测量宽带湍流、低频纬向流(ZFs)和测地声模(GAMs)之间非线性能量传递的绝对速率。结果表明,从中频(20-80 kHz)传递的湍流动能进入 ZFs 和 GAMs,以及进入更高频率(>80 kHz)的波动。随着加热功率的增加,来自湍流的能量传递到 GAMs 和 GAMs 的幅度增加,达到峰值,然后减小,而进入 ZFs 的能量以及 ZFs 本身随着加热功率的增加而单调增加。因此,ZFs 和 GAMs 之间存在对湍流动能传递的竞争,随着加热功率的增加,能量传递到 ZFs 变得占主导地位。还在不同的加热功率下测量了极向-径向雷诺应力和平均径向电场分布,发现它们与能量传递测量一致。结果表明,ZFs 在低至高(L-H)等离子体约束转变中起着重要作用。