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首页> 外文期刊>Journal of Fluid Mechanics >DIRECT SIMULATION OF EVOLUTION AND CONTROL OF THREE-DIMENSIONAL INSTABILITIES IN ATTACHMENT-LINE BOUNDARY LAYERS
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DIRECT SIMULATION OF EVOLUTION AND CONTROL OF THREE-DIMENSIONAL INSTABILITIES IN ATTACHMENT-LINE BOUNDARY LAYERS

机译:附着线边界层中三维不稳定性演化与控制的直接模拟

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The spatial evolution of three-dimensional disturbances in an attachment-line boundary layer is computed by direct numerical simulation of the unsteady, incompressible Navier-Stokes equations. Disturbances are introduced into the boundary layer by harmonic sources that involve unsteady suction and blowing through the wall. Various harmonic-source generators are implemented on or near the attachment line, and the disturbance evolutions are compared. Previous two-dimensional simulation results and nonparallel theory are compared with the present results. The three-dimensional simulation results for disturbances with quasi-two-dimensional features indicate growth rates of only a few percent larger than pure two-dimensional results; however, the results are close enough to enable the use of the more computationally efficient, two-dimensional approach. However, true three-dimensional disturbances are more likely in practice and are more stable than two-dimensional disturbances. Disturbances generated off (but near) the attachment line spread both away from and toward the attachment line as they evolve. The evolution pattern is comparable to wave packets in flat-plate boundary-layer hows. Suction stabilizes the quasi-two-dimensional attachment-line instabilities, and blowing destabilizes these instabilities; these results qualitatively agree with the theory. Furthermore, suction stabilizes the disturbances that develop off the attachment line. Clearly, disturbances that are generated near the attachment line can supply energy to attachment-line instabilities, but suction can be used to stabilize these instabilities. [References: 26]
机译:通过对不稳定的,不可压缩的Navier-Stokes方程进行直接数值模拟,可以计算出附着线边界层中三维扰动的空间演化。扰动是由谐波源引入边界层的,其中包括不稳定的吸力和吹过壁的干扰。在连接线上或附近安装了各种谐波源发生器,并比较了干扰的演变。将先前的二维仿真结果和非平行理论与当前结果进行比较。具有准二维特征的扰动的三维仿真结果表明,其增长率仅比纯二维结果大百分之几。但是,结果足够接近,可以使用计算效率更高的二维方法。但是,实际的三维扰动在实践中比二维扰动更可能且更稳定。附着线附近(但附近)产生的干扰随着它们的发展而远离附着线并向附着线扩散。演化模式与平板边界层方法中的波包相当。吸力稳定了准二维连接线的不稳定性,而吹气则破坏了这些不稳定性;这些结果在质量上与理论相符。此外,吸力可稳定附着管线上产生的干扰。显然,在连接线附近产生的干扰可以为连接线的不稳定性提供能量,但是可以使用吸力来稳定这些不稳定性。 [参考:26]

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