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High Resolution DNS of Incompressible Homogeneous Forced Turbulence —Time Dependence of the Statistics—

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Abstract

Results of direct numerical simulation (DNS) of incompressible homoge-neous and isotropic forced turbulence with grid points up to 10243 are presented with emphasis on the time dependence of the turbulence statistics. The Taylor micro scale Reynolds number at a quasi-stationary state is 283 in the DNS with 10243 grid points, and the energy spectrum exhibits an universal equilibrium range. The results suggest that for R λ > 280 or so, the energy dissipation rate normalized by the integral length scale and root-mean-square velocity is almost independent of R λ and is 0.44 – 0.45.

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© 2003 Springer Japan

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Ishihara, T., Kaneda, Y. (2003). High Resolution DNS of Incompressible Homogeneous Forced Turbulence —Time Dependence of the Statistics—. In: Kaneda, Y., Gotoh, T. (eds) Statistical Theories and Computational Approaches to Turbulence. Springer, Tokyo. https://doi.org/10.1007/978-4-431-67002-5_11

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  • DOI: https://doi.org/10.1007/978-4-431-67002-5_11

  • Publisher Name: Springer, Tokyo

  • Print ISBN: 978-4-431-67004-9

  • Online ISBN: 978-4-431-67002-5

  • eBook Packages: Springer Book Archive

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