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Direct numerical simulation of turbulent channel flow up to ReΟ„β‰ˆ5200Re_\tau \approx 5200

Abstract

A direct numerical simulation of incompressible channel flow at ReΟ„Re_\tau = 5186 has been performed, and the flow exhibits a number of the characteristics of high Reynolds number wall-bounded turbulent flows. For example, a region where the mean velocity has a logarithmic variation is observed, with von Karman constant ΞΊ=0.384Β±0.004\kappa = 0.384 \pm 0.004. There is also a logarithmic dependence of the variance of the spanwise velocity component, though not the streamwise component. A distinct separation of scales exists between the large outer-layer structures and small inner-layer structures. At intermediate distances from the wall, the one-dimensional spectrum of the streamwise velocity fluctuation in both the streamwise and spanwise directions exhibits kβˆ’1k^{-1} dependence over a short range in kk. Further, consistent with previous experimental observations, when these spectra are multiplied by kk (premultiplied spectra), they have a bi-modal structure with local peaks located at wavenumbers on either side of the kβˆ’1k^{-1} range.Comment: Under consideration for publication in J. Fluid Mec

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