Effect of wall temperature on hypersonic turbulent boundary layer

边界层 湍流 高超音速 物理 缩放比例 机械 马赫数 绝热壁 雷诺数 涡流 绝热过程 温度梯度 直接数值模拟 经典力学 材料科学 几何学 热力学 数学 气象学
作者
You-Biao Chu,Yueqing Zhuang,Xi‐Yun Lu
出处
期刊:Journal of Turbulence [Taylor & Francis]
卷期号:14 (12): 37-57 被引量:33
标识
DOI:10.1080/14685248.2013.867348
摘要

Turbulent boundary layers at Mach 4.9 with the ratio of wall temperature to recovery temperature from 0.5 to 1.5 are investigated by means of direct numerical simulation. Various fundamental properties relevant to the influence of wall temperature on Morkovin's scaling, standard and modified strong Reynolds analogies, and coherent vortical structures have been studied. It is identified that the scaling relations proposed for cool and adiabatic wall conditions, such as Morkovin's scaling and the modified strong Reynolds analogy, are also applicable for hot wall condition. Moreover, the relation between the density and temperature fluctuations under the second-order approximation is derived and verified to provide a reliable prediction. Based on the analysis of coherent vortical structures, it is found that the orientation of vortex core can be quantitatively determined by means of the vector with its direction and modulus using the local strain direction and the imaginary part of the eigenvalue of velocity gradient tensor, respectively. As the increase of wall temperature, the spanwise distance between the two legs of hairpin vortex increases, and the mean swirling strength and the angle of vortical structure with respect to the wall plane also increase in the inner layer. The statistical properties relevant to vortical structures are nearly insensitive to the wall temperature in the outer layer.
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