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Direct Simulation of Evolution and Control of Nonlinear Instabilities in Attachment-Line Boundary Layers

机译:附件线边界层中非线性不稳定性的演化和控制的直接模拟

摘要

The unsteady, incompressible Navier-Stokes equations are used for the direct numerical simulation (DNS) of spatially evolving disturbances in a three-dimensional (3-D) attachment-line boundary layer. Two-dimensional (2-D) disturbances are introduced either by forcing at the in ow or by harmonic-source generators at the wall; 3-D disturbances are introduced by harmonic-source generators at the wall. The DNS results are in good agreement with both 2-D non-parallel theory (for small-amplitude disturbances) and weakly nonlinear theory (for finite-amplitude disturbances), which validates the two theories. The 2-D DNS results indicate that nonlinear disturbance growth occurs near branch II of the neutral stability curve; however, steady suction can be used to stabilize this disturbance growth. For 3-D instabilities that are generated o the attachment line, spreading both toward and away from the attachment line causes energy transfer to the attachment-line and downstream instabilities; suction stabilizes these instabilities. Furthermore, 3-D instabilities are more stable than 2-D or quasi-2-D instabilities.
机译:不稳定的,不可压缩的Navier-Stokes方程用于三维(3-D)附件线边界层中空间演化扰动的直接数值模拟(DNS)。二维(2-D)干扰是通过强制输入或通过壁上的谐波源发生器引入的。 3-D干扰是由墙上的谐波源发生器引入的。 DNS结果与2-D非平行理论(用于小振幅干扰)和弱非线性理论(用于有限振幅干扰)都很好地吻合,这验证了这两种理论。二维DNS结果表明,非线性扰动增长发生在中性稳定性曲线的第II条附近;但是,可以使用稳定的吸力来稳定这种干扰的增长。对于在附接线上产生的3-D不稳定性,朝着和远离附接线的方向扩散会导致能量转移到附接线和下游不稳定性。吸力可以稳定这些不稳定性。此外,3维不稳定性比2维或准2维不稳定性更稳定。

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  • 作者

    Joslin Ronald D.;

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  • 年度 2004
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