articleTop 1% cited
Energy dissipation rate and energy spectrum in high resolution direct numerical simulations of turbulence in a periodic box
Physics of Fluids · 2003 · Vol. 15(2) · pp. L21–L24
Yukio Kaneda✉(Nagoya University)Takashi Ishihara(Nagoya University)Mitsuo Yokokawa(National Institute of Advanced Industrial Science and Technology)Ken-ichi Itakura(Japan Agency for Marine-Earth Science and Technology)Atsuya Uno(Japan Agency for Marine-Earth Science and Technology)
Abstract
High-resolution direct numerical simulations (DNSs) of incompressible homogeneous turbulence in a periodic box with up to 40963 grid points were performed on the Earth Simulator computing system. DNS databases, including the present results, suggest that the normalized mean energy dissipation rate per unit mass tends to a constant, independent of the fluid kinematic viscosity ν as ν→0. The DNS results also suggest that the energy spectrum in the inertial subrange almost follows the Kolmogorov k−5/3 scaling law, where k is the wavenumber, but the exponent is steeper than −5/3 by about 0.1.
Fluid Dynamics and Turbulent FlowsMeteorological Phenomena and SimulationsWind and Air Flow StudiesPhysicsTurbulenceDirect numerical simulationDissipationWavenumberKolmogorov microscalesScalingStatistical physicsK-omega turbulence modelCompressibility
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References
Velocity field statistics in homogeneous steady turbulence obtained using a high-resolution direct numerical simulation
Physics of Fluids · 2002 · 418 citations
On the universality of the Kolmogorov constant
Physics of Fluids · 1995 · 683 citations
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