自由流湍流对发夹涡演化影响的DNS研究

K. Matsuura
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引用次数: 2

摘要

采用直接数值模拟的方法,研究了层流-湍流过渡过程中自由流湍流对发夹涡演化的影响。在FST强度为0 ~ 6%,自由流马赫数为0.5的条件下进行了模拟。FST改变了发夹涡的对称性、边界层内涡的排列、壁面高摩擦点的位置以及涡的尺度。通过对计算流场的分析,研究了壁面高摩擦区与下游发夹涡的关系。在引入FST的同时引入进口正弦扰动,会产生与不引入FST时不同的非对称发夹涡和大量的二次发夹涡。边界层过渡的特征是表面摩擦的增加。由于在非常靠近壁面的地方产生了涡流,因此产生了高摩擦区域。为了检测产生高摩擦区域的涡流部分,提出了一种基于欧拉角的内部点判断算法。负责产生这种高摩擦区域的近壁涡的内部点被成功地可视化为R3中的一组点。高摩擦区域是发夹腿的尖端和发夹包下引起的近壁涡的区域。这些区域通常对应于发夹包的外围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNS INVESTIGATION INTO THE EFFECT OF FREE-STREAM TURBULENCE ON HAIRPIN-VORTEX EVOLUTION
The effects of free-stream turbulence (FST) on the evolution of hairpin vortices during the process of laminar-turbulent transition are investigated by direct numerical simulation. The simulations are conducted for FST intensities of 0–6% and a free-stream Mach number of 0.5. FST changes the symmetry of the hairpin vortex, the arrangement of vortices inside the boundary layer, the location of high friction at the wall, and the scales of the vortices. The relationship between high-friction regions at the wall and hairpin vortices convected downstream is investigated by analyzing the computed flow fields. When FST is introduced along with inlet sinuous disturbances, asymmetric hairpin vortices and numerous secondary hairpin vortices, which are different from the case of no FST, are generated. The boundary-layer transition is characterized by an increase in skin-friction. As a result of vortex creation very close to the wall, high-friction regions are generated. To detect the vortex parts responsible for generating the high-friction regions, a new judgement algorithm for interior points is derived based on the Euler angle. The interior points of the near-wall vortices responsible for generating such highfriction regions are successfully visualized as a group of points in R3. The high-friction regions are the tips of hairpin legs and the regions of near-wall vortices induced beneath a hairpin packet. These regions often correspond to the periphery of the hairpin packets.
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