Relation between shear parameter and Reynolds number in statistically stationary turbulent shear flows
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Publication:3554575
DOI10.1063/1.1764431zbMath1186.76465arXivnlin/0405001OpenAlexW2042783256MaRDI QIDQ3554575
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/nlin/0405001
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Direct numerical simulation of stationary homogeneous stratified sheared turbulence ⋮ Approach towards local isotropy in statistically stationary turbulent shear flows ⋮ On the asymptotic behaviour of large-scale turbulence in homogeneous shear flow ⋮ Statistical behaviour of isotropic and anisotropic fluctuations in homogeneous turbulence ⋮ Statistics and geometry of passive scalars in turbulence ⋮ Anisotropy of the Spectral Structures in Compressible Homogeneous Turbulent Shear Flow ⋮ Clustering and turbulence modulation in particle-laden shear flows ⋮ Preservation of statistical properties in large-eddy simulation of shear turbulence ⋮ Resolution effects and scaling in numerical simulations of passive scalar mixing in turbulence ⋮ Efficient algorithm for simulating homogeneous turbulent shear flow without remeshing ⋮ An algorithm for solving the Navier–Stokes equations with shear-periodic boundary conditions and its application to homogeneously sheared turbulence
Cites Work
- Equations relating structure functions of all orders
- Derivative moments in stationary homogeneous shear turbulence
- Reynolds number effects on the fine structure of uniformly sheared turbulence
- The anisotropy of the small scale structure in high Reynolds number (Rλ∼1000) turbulent shear flow
- Scaling laws and intermittency in homogeneous shear flow
- Derivative moments in turbulent shear flows
- A simple model for self-sustained oscillations in homogeneous shear flow
- Direct numerical simulation of stratified homogeneous turbulent shear flows
- Turbulence in homogeneous shear flows
- Scale-by-scale budget and similarity laws for shear turbulence
- Energy dissipation in body-forced plane shear flow
- An update on the energy dissipation rate in isotropic turbulence
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