Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Scaling laws for fully developed turbulent shear flows. Part 1. Basic hypotheses and analysis - MaRDI portal

Scaling laws for fully developed turbulent shear flows. Part 1. Basic hypotheses and analysis

From MaRDI portal
Publication:4694470

DOI10.1017/S0022112093000874zbMath0772.76026OpenAlexW2105004227MaRDI QIDQ4694470

Grigory Isaakovich Barenblatt

Publication date: 11 October 1993

Published in: Journal of Fluid Mechanics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1017/s0022112093000874



Related Items

Boundary-layer equations for a power-law shear-driven flow over a plane surface of non-Newtonian fluids, Viscosity-dependent inertial spectra of the Burgers and Korteweg–deVries–Burgers equations, Pulsating pipe flow with large-amplitude oscillations in the very high frequency regime. Part 1. Time-averaged analysis, Direct numerical simulation of the Ekman layer: A step in Reynolds number, and cautious support for a log law with a shifted origin, Comparison of mean flow similarity laws in zero pressure gradient turbulent boundary layers, Structure of a turbulent flow through plane channels with smooth and rough walls: an analysis based on high resolution DNS results, Boundary layer similarity flow driven by power-law shear, Structural ensemble dynamics based closure model for wall-bounded turbulent flow, New perspective in statistical modeling of wall-bounded turbulence, Quantifying wall turbulence via a symmetry approach. Part 2. Reynolds stresses, On the existence of global‐in‐time weak solutions and scaling laws for Kolmogorov's two‐equation model for turbulence, Stepan Prokofievich Timoshenko and America, Langmuir-type vortices in wall-bounded flows driven by a criss-cross wavy wall topography, Non-universal scaling transition of momentum cascade in wall turbulence, On the existence and scaling of structure functions in turbulence according to the data, A family of new solutions on the wall jet, Characterization and control of dimensionally similar systems, A note on the overlap region in turbulent boundary layers, Nonlinear RDT theory of near-wall turbulence, An experimental investigation of a highly accelerated turbulent boundary layer, Reynolds dependence of third-order velocity structure functions, A dynamic subfilter-scale model for plane parallel flows, On the incomplete similarity for turbulent velocity profiles in rough pipes, Application of power laws to low Reynolds number boundary layers on smooth and rough surfaces, Evaluation of the Barenblatt–Chorin–Prostokishin power law for turbulent boundary layers, Power laws for turbulent boundary layer flow, Experimental study of temperature distribution and local heat flux for turbulent Rayleigh-Bénard convection of air in a long rectangular enclosure, Acceleration in turbulent channel flow: universalities in statistics, subgrid stochastic models and an application, Wall-bounded turbulent flows at high Reynolds numbers: Recent advances and key issues, The venerable 1/7th power law turbulent velocity profile: a classical nonlinear boundary value problem solution and its relationship to stochastic processes, Turbulent boundary layers: is the wall falling or merely wobbling?, Analysis of power law and log law velocity profiles in the overlap region of a turbulent wall jet, Scaling properties of turbulent pipe flow at low Reynolds number, Critical phenomena in gravitational collapse, Log laws or power laws: The scaling in the overlap region, The importance of higher-order effects in the Barenblatt–Chorin theory of wall-bounded fully developed turbulent shear flows, Power law and log law velocity profiles in fully developed turbulent pipe flow: Equivalent relations at large Reynolds numbers, Power law and log law velocity profiles in turbulent boundary-layer flow: Equivalent relations at large Reynolds numbers, Large-Reynolds-number asymptotics of the streamwise normal stress in zero-pressure-gradient turbulent boundary layers, Analysis of the turbulent law of the wall through the finite scale Lyapunov theory, Description of the flow in a linear cascade with an upstream cavity. I: Influence of turbulence, A mathematical model for the scaling of turbulence, Self-preservation in a zero pressure gradient rough-wall turbulent boundary layer, Comment on the paper ``On the scaling of three-dimensional homogeneous and isotropic turbulence by Benzi et al, Quantifying wall turbulence via a symmetry approach: a Lie group theory, An engineering model of a turbulent liquid film flow, Exact solutions for near-wall turbulence theory, Sheared free-surface flow over three-dimensional obstructions of finite amplitude, A universal velocity profile for smooth wall pipe flow, Progress in pipe and channel flow turbulence, 1961–2011, Intermediate scaling and logarithmic invariance in turbulent pipe flow, Stochastic renormalization group in percolation. I: Fluctuations and crossover, Some fractal models of fracture



Cites Work