On the generation of free-stream turbulence at low Reynolds number: A numerical study
We investigate the generation of free-stream perturbations at a relatively low characteristic Reynolds number of 1000 by means of direct numerical simulations using a synthetic turbulence generation method. This approach consists of generating turbulent fluctuations by means of digital filtering and...
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Veröffentlicht in: | Computers & fluids 2024-08, Vol.280, p.106345, Article 106345 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We investigate the generation of free-stream perturbations at a relatively low characteristic Reynolds number of 1000 by means of direct numerical simulations using a synthetic turbulence generation method. This approach consists of generating turbulent fluctuations by means of digital filtering and a source term formulation in the Navier–Stokes equations. To assess its validity in the framework of decaying turbulence, we compare the results with those obtained with a physically-based, grid-induced turbulent flow in terms of spatial decay, evolution of characteristic length-scales and energy spectra. Also, we highlight relevant differences such as those in the streamwise development length and the anisotropy of the largest scales. Then, we characterize the generated perturbations when systematically varying the input parameters, namely the initial integral length-scale and turbulence intensity. Here, we notice differences in the streamwise decay of the turbulence intensity and the development length as we vary these parameters. By inspecting the evolution of the characteristic length-scales and the micro-scale Reynolds number, we also identify that the effective scale separation is highly sensitive to these variations.
•Free-stream turbulence generated via a digital-filter synthetic approach and DNS.•Direct comparison with experimental-like, grid-induced turbulence approach.•Study over the influence of input parameters on characteristic flow features.•Characterization in terms of decay’s large-scale observables and energy spectra. |
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ISSN: | 0045-7930 1879-0747 |
DOI: | 10.1016/j.compfluid.2024.106345 |