论文标题

使用大型模拟的分形板在可压缩流程中产生的唤醒的研究

Investigation of wakes generated by fractal plates in the compressible flow regime using large-eddy simulations

论文作者

Es-Sahli, Omar, Sescu, Adrian, Afsar, Mohammed Z., Buxton, Oliver R. H.

论文摘要

我们研究了使用大型模拟器(LES)在亚音速和超音速上游条件下的马赫数(LES)在可压缩性方面与正方形和分形形状多尺度结构相互作用的流量。我们还旨在确定这些相互作用与规范不可压缩流问题中相应相互作用的相似性和差异。为了说明与分形结构相关的几何复杂性,我们应用了一种浸入的边界方法来对固体表面的无滑动边界条件进行建模,并在小分形特征附近具有足够的网状分辨率。我们通过与低马赫数的实验风洞测量值进行了广泛的比较来验证数值结果。与不可压缩的流动案例结果相似,我们发现分形板的流量结构分解,并在下游方向上增加了湍流混合。随着马赫数的增加,我们观察到垂直于流向跨界平面的横向方向上明显的唤醒曲折和较高的唤醒速率。尽管不显着,但我们使用MACH数量范围的两点速度相关性量化了正方形和分形板之间的差异。与方案相比,由分形板在可压缩方案中产生的唤醒显示出较低的湍流动能(TKE)和能级水平。此外,就近场压力光谱而言,结果似乎表明分形板具有减少空气动力学噪声的潜力。

We investigate flows interacting with a square and a fractal shape multi-scale structures in the compressible regime for Mach numbers at subsonic and supersonic upstream conditions using large-eddy-simulations (LES). We also aim at identifying similarities and differences that these interactions have with corresponding interactions in the canonical incompressible flow problem. To account for the geometrical complexity associated with the fractal structures, we apply an immersed boundary method to model the no-slip boundary condition at the solid surfaces, with adequate mesh resolution in the vicinity of the small fractal features. We validate the numerical results through extensive comparisons with experimental wind tunnel measurements at a low Mach number. Similar to the incompressible flow case results, we find a break-up of the flow structures by the fractal plate and an increase in turbulent mixing in the downstream direction. As the Mach number increases, we observe noticeable wake meandering and higher spread rate of the wake in the lateral direction perpendicular to the streamwise-spanwise plane. Although not significant, we quantify the difference between the square and the fractal plates using two-point velocity correlations across the Mach number range. The wakes generated by the fractal plate in the compressible regime showed lower turbulent kinetic energy (TKE) and energy spectra levels compared to those of the square case. Moreover, results in terms of the near-field pressure spectra seem to indicate that the fractal plate has the potential to reduce the aerodynamic noise.

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