IDMEC/IST, Technical University of Lisbon, Pavilhão Mecânica I, 1° andar/LASEF, Avenida Rovisco Pais, 1049-001 Lisboa, Portugal.
Philos Trans A Math Phys Eng Sci. 2011 Feb 28;369(1937):738-53. doi: 10.1098/rsta.2010.0300.
The role of coherent vortices near the turbulent/non-turbulent (T/NT) interface in a turbulent plane jet is analysed by a direct numerical simulation (DNS). The coherent vortices near the jet edge consist of large-scale vortical structures (LSVSs) maintained by the mean shear and intense vorticity structures (IVSs) created by the background fluctuating turbulence field. The radius of the LSVS is equal to the Taylor micro-scale R(lsvs)≈λ, while the radius of the IVS is of the order of the Kolmogorov micro-scale R(ivs)~η. The LSVSs are responsible for the observed vorticity jump at the T/NT interface, being of the order of the Taylor micro-scale. The coherent vortices in the proximity of the T/NT interface are preferentially aligned with the tangent to the T/NT interface and are responsible for the viscous dissipation of kinetic energy near the T/NT interface and to the characteristic shape of the enstrophy viscous diffusion observed at that location.
通过直接数值模拟(DNS)分析了湍流/非湍流(T/NT)界面附近相干涡旋在湍流射流中的作用。射流边缘附近的相干涡旋由平均剪切维持的大尺度涡结构(LSVS)和由背景脉动湍流场产生的强涡结构(IVS)组成。LSVS 的半径等于泰勒微尺度 R(lsvs)≈λ,而 IVS 的半径则为柯尔莫哥洛夫微尺度 R(ivs)~η。LSVS 负责观察到的 T/NT 界面处的涡量跃变,其量级与泰勒微尺度相当。T/NT 界面附近的相干涡旋优先与 T/NT 界面的切线对齐,负责 T/NT 界面附近的动能粘性耗散,并负责在该位置观察到的涡度粘性扩散的特征形状。