Elperin Tov, Golubev Ilia, Kleeorin Nathan, Rogachevskii Igor
The Pearlstone Center for Aeronautical Engineering Studies, Department of Mechanical Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, P. O. Box 653, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Dec;76(6 Pt 2):066310. doi: 10.1103/PhysRevE.76.066310. Epub 2007 Dec 14.
We study a large-scale instability in a sheared nonhelical turbulence that causes generation of large-scale vorticity. Three types of the background large-scale flows are considered, i.e., the Couette and Poiseuille flows in a small-scale homogeneous turbulence, and the "log-linear" velocity shear in an inhomogeneous turbulence. It is known that laminar plane Couette flow and antisymmetric mode of laminar plane Poiseuille flow are stable with respect to small perturbations for any Reynolds numbers. We demonstrate that in a small-scale turbulence under certain conditions the large-scale Couette and Poiseuille flows are unstable due to the large-scale instability. This instability causes formation of large-scale vortical structures stretched along the mean sheared velocity. The growth rate of the large-scale instability for the "log-linear" velocity shear is much larger than that for the Couette and Poiseuille background flows. We have found a turbulent analogue of the Tollmien-Schlichting waves in a small-scale sheared turbulence. A mechanism of excitation of turbulent Tollmien-Schlichting waves is associated with a combined effect of the turbulent Reynolds stress-induced generation of perturbations of the mean vorticity and the background sheared motions. These waves can be excited even in a plane Couette flow imposed on a small-scale turbulence when perturbations of mean velocity depend on three spatial coordinates. The energy of these waves is supplied by the small-scale sheared turbulence.
我们研究了剪切非螺旋湍流中的一种大规模不稳定性,这种不稳定性会导致大尺度涡度的产生。考虑了三种类型的背景大尺度流动,即在小尺度均匀湍流中的库埃特流和泊肃叶流,以及在非均匀湍流中的“对数线性”速度剪切。已知层流平面库埃特流和层流平面泊肃叶流的反对称模式对于任何雷诺数的小扰动都是稳定的。我们证明,在一定条件下的小尺度湍流中,由于这种大规模不稳定性,大尺度库埃特流和泊肃叶流是不稳定的。这种不稳定性导致沿平均剪切速度拉伸的大尺度涡旋结构的形成。“对数线性”速度剪切的大规模不稳定性的增长率远大于库埃特流和泊肃叶流背景的增长率。我们在小尺度剪切湍流中发现了托尔明 - 施利希廷波的湍流类似物。湍流托尔明 - 施利希廷波的激发机制与湍流雷诺应力引起的平均涡度扰动的产生和背景剪切运动的综合效应有关。当平均速度扰动依赖于三个空间坐标时,即使在施加于小尺度湍流的平面库埃特流中也能激发这些波。这些波的能量由小尺度剪切湍流提供。