横磁场作用下管道湍流的衰减

O. Zikanov, D. Krasnov, T. Boeck, S. Sukoriansky
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引用次数: 0

摘要

通过高分辨率直接数值模拟研究了蜂窝湍流在静态横向磁场作用下的衰减。模拟遵循了揭示性的实验研究[1],特别是在包括蜂窝出口在内的整个管道中施加强横向磁场时,在流动的下游部分存在高振幅速度波动的矛盾观察,而在其他配置中则没有。结果表明,波动是由于在衰变初始阶段流动中形成的大尺度准二维结构并在磁抑制下幸存下来所致。计算了湍流的统计特性,如能量衰减曲线、两点相关性和典型长度尺度。研究表明,磁场作用下的湍流衰减是一种复杂的现象,它与引入磁场时的流动状态密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decay of Turbulence in a Duct With Transverse Magnetic Field
Decay of honeycomb-generated turbulence in a duct with a static transverse magnetic field is studied via high-resolution direct numerical simulations. The simulations follow the revealing experimental study [1], in particular the paradoxical observation of high-amplitude velocity fluctuations, which exist in the downstream portion of the flow when the strong transverse magnetic field is imposed in the entire duct including the honeycomb exit, but not in other configurations. It is shown that the fluctuations are caused by the large-scale quasi-two-dimensional structures forming in the flow at the initial stages of the decay and surviving the magnetic suppression. Statistical turbulence properties, such as the energy decay curves, two-point correlations and typical length scales are computed. The study demonstrates that turbulence decay in the presence of a magnetic field is a complex phenomenon critically depending on the state of the flow at the moment the field is introduced.
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