Elperin Tov, 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. 2003 Jul;68(1 Pt 2):016311. doi: 10.1103/PhysRevE.68.016311. Epub 2003 Jul 25.
An effect of a mean velocity shear on a turbulence and on the effective force which is determined by the gradient of the Reynolds stresses is studied. Generation of a mean vorticity in a homogeneous incompressible nonhelical turbulent flow with an imposed mean velocity shear due to an excitation of a large-scale instability is found. The instability is caused by a combined effect of the large-scale shear motions ("skew-induced" deflection of equilibrium mean vorticity) and "Reynolds stress-induced" generation of perturbations of mean vorticity. Spatial characteristics of the instability, such as the minimum size of the growing perturbations and the size of perturbations with the maximum growth rate, are determined. This instability and the dynamics of the mean vorticity are associated with Prandtl's turbulent secondary flows.
研究了平均速度剪切对湍流以及由雷诺应力梯度确定的有效力的影响。发现在具有外加平均速度剪切的均匀不可压缩非螺旋湍流中,由于大尺度不稳定性的激发会产生平均涡度。这种不稳定性是由大尺度剪切运动(平衡平均涡度的“斜度诱导”偏转)和平均涡度扰动的“雷诺应力诱导”生成的综合效应引起的。确定了不稳定性的空间特征,例如增长扰动的最小尺寸和具有最大增长率的扰动尺寸。这种不稳定性和平均涡度的动力学与普朗特湍流二次流有关。