The role of shear flow collapse and enhanced turbulence spreading in edge cooling approaching the density limit

Yanmin Liu, T. Long, P. H. Diamond, R. Ke, Zhipeng Chen, Xin Xu, Wenjing Tian, Rongjie Hong, M. Cao, Min Xu, Lu Wang, Zhoujun Yang, Jinbang Yuan, Yongkang Zhou, Qinghao Yan, Qinghu Yang, C. Shen, Lin Nie, Zhanhui Wang, G. Hao, Nengchao Wang, Z. Chen, Jiquan Li, Wei Chen, Wulyu Zhong
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Abstract

Experimental studies of the dynamics of shear flow and turbulence spreading at the edge of tokamak plasmas are reported. Scans of line-averaged density and plasma current are carried out while approaching the Greenwald density limit on the J-TEXT tokamak. In all scans, when the Greenwald fraction f_G=n ̅/n_G=n ̅/(I_p/πa^2) increases, a common feature of enhanced turbulence spreading and edge cooling is found. The result suggests that turbulence spreading is a good indicator of edge cooling, indeed better than turbulent particle transport is. The normalized turbulence spreading power increases significantly when the normalized E×B shearing rate decreases. This indicates that turbulence spreading becomes prominent when the shearing rate is weaker than the turbulence scattering rate. The asymmetry between positive/negative (blobs/holes) spreading events, turbulence spreading power and shear flow are discussed. These results elucidate the important effects of interaction between shear flow and turbulence spreading on plasma edge cooling.
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剪切流崩溃和湍流扩散增强在接近密度极限的边缘冷却中的作用
报告了对托卡马克等离子体边缘剪切流和湍流扩散动力学的实验研究。在接近 J-TEXT 托卡马克的格林瓦尔德密度极限时,对线均密度和等离子体电流进行了扫描。在所有扫描中,当格林瓦尔德分数 f_G=n ̅/n_G=n ̅/(I_p/πa^2) 增加时,发现了湍流扩散和边缘冷却增强的共同特征。结果表明,湍流扩散是边缘冷却的一个很好的指标,实际上比湍流粒子输运更好。当归一化 E×B 剪切率降低时,归一化湍流扩散功率显著增加。这表明,当剪切率小于湍流散射率时,湍流扩散变得突出。讨论了正/负(球状/孔状)扩散事件、湍流扩散力和剪切流之间的不对称性。这些结果阐明了剪切流和湍流扩散之间的相互作用对等离子体边缘冷却的重要影响。
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