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Progress in Wall Turbulence: Understanding and Modeling

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Cover of 'Progress in Wall Turbulence: Understanding and Modeling'

Table of Contents

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    Book Overview
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    Chapter 1 The WALLTURB Project
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    Chapter 2 The Law of the Wall. Indications from DNS, and Opinion
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    Chapter 3 A Web-Services Accessible Turbulence Database and Application to A-Priori Testing of a Matrix Exponential Subgrid Model
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    Chapter 4 Modeling Multi-point Correlations in Wall-Bounded Turbulence
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    Chapter 5 Theoretical Prediction of Turbulent Skin Friction on Geometrically Complex Surfaces
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    Chapter 6 Scaling Turbulent Fluctuations in Wall Layers
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    Chapter 7 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 8 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 9 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 10 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 11 Reynolds Number Dependence of the Amplitude Modulated Near-Wall Cycle
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    Chapter 12 Tomographic Particle Image Velocimetry Measurements of a High Reynolds Number Turbulent Boundary Layer
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    Chapter 13 Study of Vortical Structures in Turbulent Near-Wall Flows
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    Chapter 14 Two-Point Near-Wall Measurements of Velocity and Wall Shear Stress Beneath a Separating Turbulent Boundary Layer
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    Chapter 15 Experimental Analysis of Turbulent Boundary Layer with Adverse Pressure Gradient Corresponding to Turbomachinery Conditions
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    Chapter 16 Near Wall Measurements in a Separating Turbulent Boundary Layer with and without Passive Flow Control
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    Chapter 17 On the Relationship Between Vortex Tubes and Sheets in Wall-Bounded Flows
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    Chapter 18 Spanwise Characteristics of Hairpin Packets in a Turbulent Boundary Layer Under a Strong Adverse Pressure Gradient
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    Chapter 19 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 20 A New Wall Function for Near Wall Mixing Length Models Based on a Universal Representation of Near Wall Turbulence
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    Chapter 21 Direct Numerical Simulations of Converging–Diverging Channel Flow
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    Chapter 22 Corrections to Taylor’s Approximation from Computed Turbulent Convection Velocities
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    Chapter 23 A Multi-scale & Dynamic Method for Spatially Evolving Flows
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    Chapter 24 Statistics and Flow Structures in Couette–Poiseuille Flows
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    Chapter 25 LES-Langevin Approach for Turbulent Channel Flow
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    Chapter 26 A Scale-Entropy Diffusion Equation for Wall Turbulence
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    Chapter 27 A Specific Behaviour of Adverse Pressure Gradient Near Wall Flows
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    Chapter 28 A Nonlinear Eddy-Viscosity Model for Near-Wall Turbulence
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    Chapter 29 ASBM-BSL: An Easy Access to the Structure Based Model Technology
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    Chapter 30 Introduction of Wall Effects into Explicit Algebraic Stress Models Through Elliptic Blending
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    Chapter 31 POD Based Reduced-Order Model for Prescribing Turbulent Near Wall Unsteady Boundary Condition
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    Chapter 32 A POD-Based Model for the Turbulent Wall Layer
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    Chapter 33 HR SPIV for Dynamical System Construction
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    Chapter 34 The Stagnation Point Structure of Wall-Turbulence and the Law of the Wall in Turbulent Channel Flow
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    Chapter 35 Wall Modelling for Implicit Large Eddy Simulation of Favourable and Adverse Pressure Gradient Flows
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    Chapter 36 LES of Turbulent Channel Flow with Pressure Gradient Corresponding to Turbomachinery Conditions
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    Chapter 37 LES Modeling of Converging Diverging Turbulent Channel Flow
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    Chapter 38 Large-Scale Organized Motion in Turbulent Pipe Flow
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    Chapter 39 Progress in Wall Turbulence: Understanding and Modeling
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    Chapter 40 Measurements of Near Wall Velocity and Wall Stress in a Wall-Bounded Turbulent Flow Using Digital Holographic Microscopic PIV and Shear Stress Sensitive Film
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    Chapter 41 Friction Measurement in Zero and Adverse Pressure Gradient Boundary Layer Using Oil Droplet Interferometric Method
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    Chapter 42 Scaling of Turbulence Structures in Very-Rough-Wall Channel Flow
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    Chapter 43 Characterizing a Boundary Layer Flow for Bubble Drag Reduction
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    Chapter 44 Direct and Large Eddy Numerical Simulations of Turbulent Viscoelastic Drag Reduction
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    Chapter 45 DNS of Supercritical Carbon Dioxide Turbulent Channel Flow
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    Chapter 46 Evaluation of v 2 – f and ASBM Turbulence Models for Transonic Aerofoil RAE2822
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    Chapter 47 Turbulence Modelling Applied to Aerodynamic Design
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Title
Progress in Wall Turbulence: Understanding and Modeling
Published by
Springer Netherlands, January 2011
DOI 10.1007/978-90-481-9603-6
ISBNs
978-9-04-819602-9, 978-9-04-819603-6
Authors

Stanislas, Michel, Jimenez, Javier, Marusic, Ivan, Mathis, Romain, Hutchins, Nicholas

Editors

Stanislas, Michel, Jimenez, Javier, Marusic, Ivan

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 21 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 21 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 4 19%
Researcher 4 19%
Student > Ph. D. Student 2 10%
Unspecified 1 5%
Other 1 5%
Other 2 10%
Unknown 7 33%
Readers by discipline Count As %
Engineering 11 52%
Unspecified 1 5%
Physics and Astronomy 1 5%
Earth and Planetary Sciences 1 5%
Unknown 7 33%