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The third-order law for magnetohydrodynamic turbulence with constant shear

机译:恒定剪切磁性动力学湍流的三阶法

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The scaling laws of mixed third-order structure functions for isotropic, homogeneous, and incompressible magnetohydrodynamic (MHD) turbulence have been recently applied in solar wind studies, even though there is recognition that isotropy is not well satisfied. Other studies have taken account of the anisotropy induced by a constant mean magnetic field. However, large-scale shear can also cause departures from isotropy. Here we examine shear effects in the simplest case, and derive the third-order laws for MHD turbulence with constant shear, where homogeneity is still assumed. This generalized scaling law has been checked by data from direct numerical simulations (DNS) of two-dimensional (2D) MHD and is found to hold across the inertial range. These results suggest that third-order structure function analysis and interpretation in the solar wind should be undertaken with some caution, since, when present, shear can change the meaning of the third-order relations.
机译:最近在太阳风研究中应用了各向同性,均匀和不可压缩的磁水流学动力学(MHD)湍流的混合三阶结构功能的缩放规律,即使存在同位数并不满足的同位数。其他研究考虑了由恒定平均磁场引起的各向异性。然而,大型剪切也可以导致来自各向同性的偏离。在这里,我们在最简单的情况下检查剪切效果,并导出具有恒定剪切的MHD湍流的三阶法律,其中仍然存在均匀性。通过来自二维(2D)MHD的直接数值模拟(DNS)的数据检查了该广义缩放法,并发现跨越惯性范围。这些结果表明,应该在谨慎时进行三阶结构函数分析和太阳风中的解释,因为当存在时,剪切可以改变三阶关系的含义。

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