结构如何传递非扩散湍流扩散

T. Long, P. H. Diamond, R. Ke, Zhipeng Chen, M. Cao, Xin Xu, Min Xu, Rongjie Hong, Wenjing Tian, Jinbang Yuan, Yanmin Liu, Qinghao Yan, Qinghu Yang, C. Shen, Weixin Guo, Lu Wang, Lin Nie, Zhanhui Wang, G. Hao, Nengchao Wang, Z. Chen, Y. Pan, Jiquan Li, Wei Chen, Wulyu Zhong
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引用次数: 0

摘要

我们报告了边缘等离子体中湍流扩散的综合实验研究。这些研究证明了湍流扩散和夹带与间歇性对流密度波动事件或爆发(即球状和孔状)之间的关系。从而阐明了湍流扩散的非扩散特性。湍流扩散速度(或平均射流速度)与密度波动的偏度呈线性相关,并随密度波动的自相关时间而增加。正密度波动产生的湍流扩散是向外的,而负密度波动产生的湍流扩散是向内的。向外传播的湍流和向内传播的湍流之间的对称性破坏程度随着密度波动振幅的增加而增加。因此,球-洞不对称是湍流扩散的关键。这些结果凸显了间歇性对流事件在传递湍流扩散过程中的重要作用,并对现有的扩散模型提出了根本性挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On how structures convey non-diffusive turbulence spreading
We report on comprehensive experimental studies of turbulence spreading in edge plasmas. These studies demonstrate the relation of turbulence spreading and entrainment to intermittent convective density fluctuation events or bursts (i.e. blobs and holes). The non-diffusive character of turbulence spreading is thus elucidated. The turbulence spreading velocity (or mean jet velocity) manifests a linear correlation with the skewness of density fluctuations, and increases with the auto-correlation time of density fluctuations. Turbulence spreading by positive density fluctuations is outward, while spreading by negative density fluctuations is inward. The degree of symmetry breaking between outward propagating blobs and inward propagating holes increases with the amplitude of density fluctuations. Thus, blob-hole asymmetry emerges as crucial to turbulence spreading. These results highlight the important role of intermittent convective events in conveying the spreading of turbulence, and constitute a fundamental challenge to existing diffusive models of spreading.
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