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Spectral analogues of the law of the wall, the defect law and the log law

机译:壁定律,缺陷定律和对数定律的光谱类似物

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Unlike the classical scaling relations for the mean-velocity profiles of wall-bounded uniform turbulent flows (the law of the wall, the defect law and the log law), which are predicated solely on dimensional analysis and similarity assumptions, scaling relations for the turbulent-energy spectra have been informed by specific models of wall turbulence, notably the attached-eddy hypothesis. In this paper, we use dimensional analysis and similarity assumptions to derive three scaling relations for the turbulent-energy spectra, namely the spectral analogues of the law of the wall, the defect law and the log law. By design, each spectral analogue applies in the same spatial domain as the attendant scaling relation for the mean-velocity profiles: the spectral analogue of the law of the wall in the inner layer, the spectral analogue of the defect law in the outer layer and the spectral analogue of the log law in the overlap layer. In addition, as we are able to show without invoking any model of wall turbulence, each spectral analogue applies in a specific spectral domain (the spectral analogue of the law of the wall in the high-wavenumber spectral domain, where viscosity is active, the spectral analogue of the defect law in the low-wavenumber spectral domain, where viscosity is negligible, and the spectral analogue of the log law in a transitional intermediate-wavenumber spectral domain, which may become sizable only at ultra-high Re_τ), with the implication that there exist model-independent one-to-one links between the spatial domains and the spectral domains. We test the spectral analogues using experimental and computational data on pipe flow and channel flow.
机译:不同于以壁为边界的均匀湍流的平均速度分布的经典比例关系(壁定律,缺陷定律和对数定律),后者仅基于尺寸分析和相似性假设,而湍流的比例关系-能谱已经由壁湍流的特定模型提供了信息,特别是附着涡假设。在本文中,我们使用尺寸分析和相似性假设来推导湍流能谱的三个比例关系,即壁定律,缺陷定律和对数定律的谱类似物。通过设计,每个光谱模拟在与平均速度轮廓的伴随缩放关系相同的空间域中应用:内层壁定律的光谱模拟,外层缺陷定律的光谱模拟和外层缺陷定律的光谱模拟。重叠层中对数定律的光谱模拟。另外,正如我们能够证明的那样,无需调用任何壁湍流模型,每个光谱类似物都适用于特定的光谱域(在高波数光谱域中壁定律的光谱类似物,其中粘度是活动的,缺陷定律在粘度可忽略不计的低波数谱域中的频谱模拟,以及在过渡中波数谱域中对数定律的频谱模拟,仅在超高Re_τ时才可能变得相当大,暗示在空间域和光谱域之间存在与模型无关的一对一链接。我们使用有关管道流量和通道流量的实验和计算数据来测试光谱类似物。

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