Leprovost Nicolas, Kim Eun-Jin
Department of Applied Mathematics, University of Sheffield, Sheffield S3 7RH, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Aug;80(2 Pt 2):026302. doi: 10.1103/PhysRevE.80.026302. Epub 2009 Aug 5.
We investigate three-dimensional magnetohydrodynamics turbulence in the presence of velocity and magnetic shear (i.e., with both a large-scale shear flow and a nonuniform magnetic field). By assuming a turbulence driven by an external forcing with both helical and nonhelical spectra, we investigate the combined effect of these two shears on turbulence intensity and turbulent transport represented by turbulent diffusivities (turbulent viscosity, alpha and beta effect) in Reynolds-averaged equations. We show that turbulent transport (turbulent viscosity and diffusivity) is quenched by a strong flow shear and a strong magnetic field. For a weak flow shear, we further show that the magnetic shear increases the turbulence intensity while decreasing the turbulent transport. In the presence of a strong flow shear, the effect of the magnetic shear is found to oppose the effect of flow shear (which reduces turbulence due to shear stabilization) by enhancing turbulence and transport, thereby weakening the strong quenching by flow shear stabilization. In the case of a strong magnetic field (compared to flow shear), magnetic shear increases turbulence intensity and quenches turbulent transport.
我们研究了存在速度剪切和磁剪切(即同时存在大规模剪切流和非均匀磁场)情况下的三维磁流体动力学湍流。通过假设由具有螺旋和非螺旋谱的外部强迫驱动的湍流,我们研究了这两种剪切对湍流强度以及雷诺平均方程中由湍流扩散率(湍流粘性、α和β效应)表示的湍流输运的综合影响。我们表明,湍流输运(湍流粘性和扩散率)会被强流剪切和强磁场抑制。对于弱流剪切,我们进一步表明磁剪切会增加湍流强度,同时降低湍流输运。在存在强流剪切的情况下,发现磁剪切的作用与流剪切的作用相反(流剪切由于剪切稳定作用会降低湍流),它通过增强湍流和输运,从而削弱流剪切稳定作用导致的强抑制作用。在强磁场(与流剪切相比)的情况下,磁剪切会增加湍流强度并抑制湍流输运。