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Nonmodal Growth of Traveling Waves on Blunt Cones at Hypersonic Speeds

机译:超音速下钝锥上行波的非模态增长

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The existing database of transition measurements in hypersonic ground facilities has established that, as the nosetip bluntness is increased, the onset of boundary layer transition over a circular cone at zero angle of attack shifts downstream. However, this trend is reversed at sufficiently large values of the nose Reynolds number, so that the transition onset location eventually moves upstream with a further increase in nose-tip bluntness. Because modal amplification is too weak to initiate transition at moderate-to-large bluntness values, nonmodal growth has been investigated as the potential basis for a physics-based model for the frustum transition. The present analysis investigates the nonmodal growth of traveling disturbances initiated within the nose-tip vicinity that peak within the entropy layer. Results show that, with increasing nose bluntness, both planar and oblique traveling disturbances experience appreciable energy amplification up to successively higher frequencies. For moderately blunt cones, the initial nonmmodal growth is followed by a partial decay that is more than overcome by an eventual, modal growth as Mack-mode waves. For larger bluntness values, the Mack-mode waves are not amplified anywhere upstream of the experimentally measured transition location, but the traveling modes still undergo a significant amount of nonmodal growth. This finding does not provide a definitive link between optimal growth and the onset of transition, but it is qualitatively consistent with the experimental observations that frustum transition in the absence of sufficient Mack-mode amplification implies a double peak in disturbance amplification and the appearance of transitional events above the boundary-layer edge.
机译:高超声速地面设施中现有的过渡测量数据库已经建立,随着鼻尖钝度的增加,边界层过渡在零攻角的圆锥上开始向下游移动。但是,在鼻子雷诺数足够大的情况下,这种趋势就会逆转,因此过渡开始位置最终会随着鼻子尖钝度的进一步增加而向上游移动。由于模态放大太弱而无法在中等到较大的钝度值上启动过渡,因此已经研究了非模态增长作为基于物理的视锥过渡模型的潜在基础。本分析调查了在熵层内达到峰值的鼻尖附近发起的行进扰动的非模态增长。结果表明,随着鼻子钝度的增加,平面和倾斜行进干扰都会经历可观的能量放大,直至频率逐渐升高。对于中等钝度的圆锥体,最初的非模态增长之后是部分衰变,而这种衰变远远超过了最终的模态增长(如麦克模式波)所克服的情况。对于较大的钝度值,Mack模式波不会在实验测量的过渡位置上游的任何位置放大,但是行进模式仍会经历大量的非模式增长。这一发现并未在最佳生长和过渡开​​始之间提供明确的联系,但在质量上与实验观察一致,即在没有足够的Mack模式放大的情况下,平截头体过渡暗示了干扰放大和过渡出现中的双峰。边界层边缘上方的事件。

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