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Large-scale streaks in wall-bounded turbulent flows: amplication, instability, self-sustaining process and control

机译:围壁湍流中的大条纹:放大,不稳定,自我维持过程和控制

摘要

Wall-bounded turbulent flows such as plane Couette flow, channel, pipe flows and boundary layer flows are fundamental problem of interest that we often meet in many scientific and engineering situations. The goal of the present thesis is to investigate the origin of large-scale streaky motions observed in the wall-bounded turbulent flows. Under a hypothesis that the large-scale streaky motions sustain with a process similar to the well-known near-wall self-sustaining cycle, the present thesis have pursued on four separate subjects: (i) non-modal amplification of streaks, (ii) the secondary instability of the finite amplitude streaks, (iii) existence of a self-sustaining process at large scale and (iv) turbulent skin friction reduction by forcing streaks. First, using a linear model with turbulent mean flow and the related eddy viscosity, it is shown that the streaks are largely amplified by harmonic and stochastic forcing. The largely amplified streaks undergo the secondary instability and it has been associated with the formation of the large-scale motions (bulge). The existence of a self-sustaining process involving the amplification and instability of streaks at large scale is proved by quenching the smaller-scale energy carrying eddies in the near-wall and logarithmic regions. Finally, it is shown that artificially forcing of large-scale streaks reduce the turbulent skin friction up to 10% by attenuating the near-wall streamwise vortices.
机译:壁面湍流,例如平面Couette流,通道,管道流和边界层流,是我们在许多科学和工程情况下经常遇到的基本问题。本论文的目的是研究在有壁边界的湍流中观察到的大规模条纹运动的起源。在假设大规模条纹运动以类似于众所周知的近壁自我维持循环的过程维持的假设下,本论文针对四个独立的主题进行了研究:(i)条纹的非模态放大,(ii )有限幅度条纹的继发性不稳定性,(iii)大规模存在自我维持过程,以及(iv)通过强迫条纹减少湍流的皮肤摩擦。首先,使用具有湍流平均流量和相关涡流粘度的线性模型,表明条纹在谐波和随机强迫的作用下大大放大。大量放大的条纹经历了次要的不稳定性,并且与大规模运动(凸起)的形成有关。通过猝灭近壁和对数区域中较小尺度的能量涡流,证明了存在大规模的条纹扩增和不稳定性的自我维持过程。最后,结果表明,人为强迫大型条纹会通过减弱近壁流向涡流将湍流的皮肤摩擦力降低多达10%。

著录项

  • 作者

    Hwang Yongyun;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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