论文标题

湍流管流中近壁相干结构的spod and Resolvent分析

SPOD and resolvent analysis of near-wall coherent structures in turbulent pipe flows

论文作者

Abreu, Leandra, Cavalieri, André, Schlatter, Philipp, Vinuesa, Ricardo, Henningson, Dan

论文摘要

使用高阶光谱元素方法执行的直接数值模拟用于研究摩擦雷诺数字的湍流管流中的相干结构$re_τ= 180 $和$ 550 $。使用光谱正确的正交分解(SPOD)分析数据库,以识别能势主导的相干结构,其中大多数是条纹和准式旋转的旋转。为了了解如何建模此类结构,使用平均值作为基本流量,使用分辨率运算符的奇异值分解来计算对谐波强迫的线性流响应。计算了频率和波数的几种组合计算的SPOD和分解分析,从而可以绘制出SPOD模式和最佳响应之间的相似性,并为湍流管流中广泛的相关尺度绘制出最佳响应。为了探索两种方法之间一致性的物理原因,引入了分解分析中提起机制的指标,当最佳强迫代表准过程涡流时激活,并且相关响应对应于条纹。在参数空间的大区域中观察到领先的SPOD和分辨模式之间的良好一致性。在该区域中,在分解分析中发现了显着的增益分离,这可能归因于与提升机制相关的强大扩增。对于两个雷诺数,观察到的一致性通常用于缓冲层中能量较大的结构。结果突出了分解分析是壁结合的湍流中相干结构的相关降低模型,特别是对于与近壁流向流向涡流和条纹相对应的流线细长结构。

Direct numerical simulations, performed with a high-order spectral-element method, are used to study coherent structures in turbulent pipe flow at friction Reynolds numbers $Re_τ = 180$ and $550$. The database was analysed using spectral proper orthogonal decomposition (SPOD) to identify energetically dominant coherent structures, most of which turn out to be streaks and quasi-streamwise vortices. To understand how such structures can be modelled, the linear flow responses to harmonic forcing were computed using the singular value decomposition of the resolvent operator, using the mean field as a base flow. The SPOD and resolvent analysis were calculated for several combinations of frequencies and wavenumbers, allowing to map out the similarities between SPOD modes and optimal responses for a wide range of relevant scales in turbulent pipe flows. In order to explore physical reasons behind the agreement between both methods, an indicator of lift-up mechanism in the resolvent analysis was introduced, activated when optimal forcing represents quasi-streamwise vortices and associated response corresponds to streaks. Good agreement between leading SPOD and resolvent modes is observed in a large region of parameter space. In this region, a significant gain separation is found in resolvent analysis, which may be attributed to the strong amplification associated with the lift-up mechanism. For both Reynolds numbers, the observed concordances were generally for structures with large energy in the buffer layer. The results highlight resolvent analysis as a pertinent reduced-order model for coherent structures in wall-bounded turbulence, particularly for streamwise elongated structures corresponding to near-wall streamwise vortices and streaks.

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