Guo Z B, Diamond P H
WCI Center for Fusion Theory, NFRI, Daejeon 305-333, South Korea.
CMTFO and CASS, University of California, San Diego, California 92093, USA.
Phys Rev Lett. 2015 Apr 10;114(14):145002. doi: 10.1103/PhysRevLett.114.145002. Epub 2015 Apr 6.
We demonstrate that E×B shear, V_{E×B}^{'}, governs the dynamics of the cross phase of the peeling-ballooning-(PB-)mode-driven heat flux, and so determines the evolution from the edge-localized (ELMy) H mode to the quiescent (Q) H mode. A physics-based scaling of the critical E×B shearing rate (V_{E×B,cr}^{'}) for accessing the QH mode is predicted. The ELMy H mode to the QH-mode evolution is shown to follow from the conversion from a phase locked state to a phase slip state. In the phase locked state, PB modes are pumped continuously, so bursts occur. In the slip state, the PB activity is a coherent oscillation. Stronger E×B shearing implies a higher phase slip frequency. This finding predicts a new state of cross phase dynamics and shows a new way to understand the physics mechanism for ELMy to the QH-mode evolution.
我们证明,E×B 剪切力(V_{E×B}^{'})控制着剥离-气球模(PB 模)驱动的热通量交叉相位的动力学,从而决定了从边缘局域模(ELMy)H 模到静态(Q)H 模的演化。预测了用于进入 QH 模的临界 E×B 剪切率(V_{E×B,cr}^{'})基于物理的标度关系。从锁相状态到相位滑移状态的转变表明了 ELMy H 模到 QH 模的演化。在锁相状态下,PB 模被持续泵浦,因此会出现爆发。在滑移状态下,PB 活动是一种相干振荡。更强的 E×B 剪切意味着更高的相位滑移频率。这一发现预测了交叉相位动力学的一种新状态,并展示了一种理解 ELMy 到 QH 模演化物理机制的新方法。