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Progress in Wall Turbulence 2

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Cover of 'Progress in Wall Turbulence 2'

Table of Contents

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    Book Overview
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    Chapter 1 On the Size of the Eddies in the Outer Turbulent Wall Layer: Evidence from Velocity Spectra
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    Chapter 2 Sensitized-RANS Modelling of Turbulence: Resolving Turbulence Unsteadiness by a (Near-Wall) Reynolds Stress Model
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    Chapter 3 Coherent Structures in Wall-Bounded Turbulence
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    Chapter 4 Attached Eddies and High-Order Statistics
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    Chapter 5 DNS of Turbulent Boundary Layers in the Quasi-Laminarization Process
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    Chapter 6 Numerical ABL Wind Tunnel Simulations with Direct Modeling of Roughness Elements Through Immersed Boundary Condition Method
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    Chapter 7 Three-Dimensional Nature of 2D Hairpin Packet Signatures in a DNS of a Turbulent Boundary Layer
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    Chapter 8 Wall Pressure Signature in Compressible Turbulent Boundary Layers
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    Chapter 9 Three-Dimensional Structure of Pressure–Velocity Correlations in a Turbulent Boundary Layer
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    Chapter 10 Computation of Complex Terrain Turbulent Flows Using Hybrid Algebraic Structure-Based Models (ASBM) and LES
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    Chapter 11 Computation of High Reynolds Number Equilibrium and Nonequilibrium Turbulent Wall-Bounded Flows Using a Nested LES Approach
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    Chapter 12 An Attempt to Describe Reynolds Stresses of Turbulent Boundary Layer Subjected to Pressure Gradient
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    Chapter 13 The Temporal Coherence of Prograde and Retrograde Spanwise Vortices in Zero-Pressure Gradient Turbulent Boundary Layers
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    Chapter 14 Boundary Layer Vorticity and the Rise of “Hairpins”
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    Chapter 15 On the Extension of Polymer Molecules in Turbulent Viscoelastic Flows: Statistical and Tensor Investigation
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    Chapter 16 Velocity of Line Plumes on the Hot Plate in Turbulent Natural Convection
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    Chapter 17 LES of a Converging–Diverging Channel Performed with the Immersed Boundary Method and a High-Order Compact Discretization
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    Chapter 18 On Minimum Aspect Ratio for Experimental Duct Flow Facilities
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    Chapter 19 Riblets Induced Drag Reduction on a Spatially Developing Turbulent Boundary Layer
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    Chapter 20 Characterization of Pipe-Flow Turbulence and Mass Transfer in a Curved Swirling Flow Behind an Orifice
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    Chapter 21 Turbulent Structure of a Concentric Annular Flow
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    Chapter 22 Reconstruction of Wall Shear-Stress Fluctuations in a Shallow Tidal River
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    Chapter 23 Analysis of Vortices Generation Process in Turbulent Boundary Subjected to Pressure Gradient
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    Chapter 24 Experimental Investigation of a Turbulent Boundary Layer Subject to an Adverse Pressure Gradient at $$Re_{\theta }$$ R e θ up to 10000 Using Large-Scale and Long-Range Microscopic Particle Imaging
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    Chapter 25 The Structure of APG Turbulent Boundary Layers
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    Chapter 26 Adverse Pressure Gradients and Curvature Effects in Turbulent Channel Flows
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    Chapter 27 On the Response of a Separating Turbulent Boundary Layer to High Amplitude Excitation
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    Chapter 28 Statistical and Temporal Characterization of Turbulent Rayleigh-Bénard Convection Boundary Layers Using Time-Resolved PIV Measurements
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    Chapter 29 Large-Scale Organization of a Near-Wall Turbulent Boundary Layer
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    Chapter 30 Near-Wall Study of a Turbulent Boundary Layer Using High-Speed Tomo-PIV
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    Chapter 31 The Effects of Superhydrophobic Surfaces on Skin Friction Drag
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    Chapter 32 Structure and Dynamics of Turbulence in Super-Hydrophobic Channel Flow
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    Chapter 33 Spectral Assessment of the Turbulent Convection Velocity in a Spatially Developing Flat Plate Turbulent Boundary Layer at Reynolds Number $$Re_\theta = 13\,000$$ R e θ = 13 000
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    Chapter 34 Statistics of Single Self-sustaining Attached Eddy in a Turbulent Channel
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    Chapter 35 Scaling the Internal Boundary Layer
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    Chapter 36 3D Spatial Correlation Tensor from an L-Shaped SPIV Experiment in the Near Wall Region
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    Chapter 37 On Objective and Non-objective Kinematic Flow Classification Criteria
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    Chapter 38 Quantification of the Full Dissipation Tensor from an L-Shaped SPIV Experiment in the Near Wall Region
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Title
Progress in Wall Turbulence 2
Published by
Springer International Publishing, January 2016
DOI 10.1007/978-3-319-20388-1
ISBNs
978-3-31-920387-4, 978-3-31-920388-1
Editors

Stanislas, Michel, Jimenez, Javier, Marusic, Ivan

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 39 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Spain 1 3%
Bosnia and Herzegovina 1 3%
Poland 1 3%
Unknown 36 92%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 12 31%
Researcher 4 10%
Other 3 8%
Student > Master 3 8%
Student > Postgraduate 2 5%
Other 4 10%
Unknown 11 28%
Readers by discipline Count As %
Engineering 16 41%
Physics and Astronomy 2 5%
Earth and Planetary Sciences 2 5%
Arts and Humanities 1 3%
Environmental Science 1 3%
Other 2 5%
Unknown 15 38%