Large-eddy simulation of transition to turbulence in boundary layers

被引:47
|
作者
Huai, XL [1 ]
Joslin, RD [1 ]
Piomelli, U [1 ]
机构
[1] NASA,LANGLEY RES CTR,FLOW MODELING & CONTROL BRANCH,HAMPTON,VA 23681
关键词
D O I
10.1007/s001620050037
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Large-eddy simulation (LES) results fur laminar-to-turbulent transition in a spatially developing boundary layer are presented. The disturbances are ingested into a laminar flow through an unsteady suction-and-blowing strip. The filtered, three-dimensional time-dependent Navier-Stokes equations are integrated numerically using spectral, high-order finite-differences, and a three stage low-storage Runge-Kutta/Crank-Nicolson time-advancement method. The buffer-domain technique is used for the outflow boundary condition. The localized dynamic model used to parametrize the subgrid-scale (SGS) stresses begins to have a significant impact at the beginning of the nonlinear transition (or intermittency) region. The flow structures commonly found in experiments are also observed in the present simulation; the computed linear instability modes and secondary instability Lambda-vortex structures are in agreement with the experiments, and the streak-like structures and turbulent statistics compare with both the experiments and the theory. The physics captured in the present LES are consistent with the experiments and the full Navier-Stokes simulation (DNS), at a significant fraction of the DNS cost. A comparison of the results obtained with several SGS models shows that the localized model gives accurate results both in a statistical sense and in terms of predicting the dynamics of the energy-carrying eddies. while requiring fewer nd hoc adjustments than the other models.
引用
收藏
页码:149 / 163
页数:15
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