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Analysis of the instabilities induced by an isolated roughness element in a laminar high-speed boundary layer

机译:层层高速边界层中隔离粗糙度元素诱导的不稳定性分析

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The disturbances evolving in the wake induced by an isolated roughness element are investigated on a flat plate inside a cold Mach 6 flow. Different instability modes are characterized by means of two-dimensional local linear stability computations for a cuboid and a ramp-shaped roughness element. A single pair of sinuous and varicose disturbances dominates the wake instability in the vicinity of each roughness geometry. A temporal growth-rate decomposition, extended to base flows depending on two spatial inhomogeneous directions, reveals that the roughness-induced wake modes extract most of their potential energy from the transport of disturbance entropy across the base-flow temperature gradients and most of their kinetic energy from the work of the disturbance Reynolds stresses against the base-flow velocity gradients. The growth rate of such instabilities is found to be influenced by the presence of Mack-mode disturbances developing on the flat plate. Evidence is observed of a continuous synchronization between the wake instabilities and the Mack-mode perturbations which resembles the second mechanism hypothesized by De Tullio & Sandham (J. Fluid Mech., vol. 763, 2015, pp. 136-145) for the excitation of wake disturbances. The evolution of the relevant production and dissipation terms of the temporal growth-rate decomposition shows that under this continuous synchronization process, the energy signature of the wake instabilities progressively shifts towards that of Mack-mode instabilities. This leads to an enhancement of the amplification rate of the wake instabilities far downstream of the roughness element, ultimately increasing the associated N-factors for some of the investigated conditions.
机译:在冷马赫数为6的平板上,研究了孤立粗糙元引起的尾流扰动。通过对长方体和斜坡形粗糙单元的二维局部线性稳定性计算,描述了不同的失稳模式。在每个粗糙几何体附近,一对蜿蜒和曲张的扰动主导着尾迹不稳定性。时间增长率分解,根据两个空间不均匀方向扩展到基流,揭示了粗糙诱导的尾迹模式从扰动熵在基流温度梯度上的传输中提取了大部分势能,从扰动雷诺应力对基流速度梯度的作用中提取了大部分动能。研究发现,这种不稳定性的增长速度受平板上发展的Mack模扰动的影响。观察到尾迹不稳定性和Mack模式扰动之间存在持续同步的证据,这类似于De Tullio&Sandham(J.Fluid Mech.,vol.763,2015,pp.136-145)为激发尾迹扰动而假设的第二种机制。时间增长率分解的相关产生项和耗散项的演化表明,在这种连续同步过程中,尾流不稳定性的能量特征逐渐向Mack模不稳定性转移。这导致粗糙度元件下游远处尾迹不稳定性的放大率增强,最终增加了某些研究条件下的相关N因子。

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