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Studies in Turbulence
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Parameterizing Turbulent Diffusion in the Atmospheric Boundary Layer
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Chapter 2
Modeling the Dissipation-Rate Equation with the Aid of Direct Simulation Data
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Chapter 3
Second-Order Modeling Of Turbulent Diffusion in an Atmospheric Surface Layer
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Chapter 4
Theoretical and Computational Study of Rotating Isotropic Turbulence
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Chapter 5
Towards A Structure-Based Turbulence Model
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Chapter 6
Effect of Mean Velocity Shear on the Dissipation Rate of Turbulent Kinetic Energy
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Chapter 7
Advances in Modeling the Pressure Correlation Terms in the Second Moment Equations
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Chapter 8
Modeling the Dissipation Rate in Rotating Turbulent Flows
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Chapter 9
Mapping Closures for Turbulent Mixing and Reaction
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Chapter 10
Subgrid Length-Scales for Large-Eddy Simulation of Stratified Turbulence
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Chapter 11
Understanding Turbulence Via Vortex Dynamics
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Chapter 12
Heteroclinic Cycles, Exponential Tails, and Intermittency in Turbulence Production
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Chapter 13
Models for the Structure and Dynamics of Near Wall Turbulence
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Chapter 14
The Streamwise Evolution of Coherent Structures in the Axisymmetric Jet Mixing Layer
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Chapter 15
On the Complexity of Turbulence Near a Wall
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Chapter 16
Observations on the Proper Orthogonal Decomposition
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Chapter 17
Lumley’s Podt Definition of Large Eddies and a Trio of Numerical Procedures
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Chapter 18
Propagating Structures in Wall-Bounded Turbulent Flows
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Chapter 19
On The Hidden Beauty of the Proper Orthogonal Decomposition
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Chapter 20
Mach number Effects on Free and Wall Turbulent Structures In Light of Instability Flow Interactions
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Chapter 21
Toward A Constitutive Relation in Compressible Turbulence
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Chapter 22
Fluid Dynamics and Noise Emission Associated With Supersonic Jets
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Chapter 23
Formulation of the Statistical Equations of Turbulent Flows with Variable Density
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Chapter 24
A Density-Weighted Conditional Closure Model for Diffusion Flames
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Chapter 25
Interaction between Chemical Reaction and Turbulence in Supersonic Nonpremixed H 2 -Air Combustion
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Chapter 26
Compressible Turbulence and Shock Waves
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Chapter 27
Occurrence of Caustics for High Frequency Acoustic Waves Propagating Through Turbulent Fields
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Chapter 28
Direct Simulation of Compressible Turbulence in A Shear Flow
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Chapter 29
The Rapid Expansion of a Turbulent Boundary Layer In A Supersonic Flow
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Chapter 30
Structural Genesis in Wall-Bounded Turbulent Flows
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Chapter 31
Some Preliminary Experiments Concerning Thermal Dispersion in a Jet
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Chapter 32
The Vortex-Lattice Structure of Turbulent-Shear Flows
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Chapter 33
Scalar Transport in a Longitudinal Vorticity System in Boundary Layers
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Chapter 34
Conditionally Sampled Vorticities and Near-Wall Turbulence Structure
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Chapter 35
Modeling the Effect of Initial And Free-Stream Conditions on Circular Wakes
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Chapter 36
On The Aetiology of Shear Layer Vortices
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Chapter 37
Characterization and Compression of Turbulent Signals and Images Using Wavelet-Packets
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Chapter 38
Self-Preservation of Temperature Fluctuations in Isotropic Turbulence
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Chapter 39
The Turbulence Contribution to the Pressure Term in the Scalar-Flux Equations
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Chapter 40
Long-Time Behavior of Material-Surface Curvature in Isotropic Turbulence
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Chapter 41
Microbubble Drag Reduction on an Axisymmetric Body under an Applied Axial Pressure Gradient
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Chapter 42
Trilinear Coordinates In Fluid Mechanics
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Chapter 43
An Alternative Approach to Disturbances in Boundary Layers
Overall attention for this book and its chapters
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Mentioned by
syllabi
1
institution with syllabi
Citations
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18
Dimensions
Readers on
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Mendeley
Book overview
1. Parameterizing Turbulent Diffusion in the Atmospheric Boundary Layer
2. Modeling the Dissipation-Rate Equation with the Aid of Direct Simulation Data
3. Second-Order Modeling Of Turbulent Diffusion in an Atmospheric Surface Layer
4. Theoretical and Computational Study of Rotating Isotropic Turbulence
5. Towards A Structure-Based Turbulence Model
6. Effect of Mean Velocity Shear on the Dissipation Rate of Turbulent Kinetic Energy
7. Advances in Modeling the Pressure Correlation Terms in the Second Moment Equations
8. Modeling the Dissipation Rate in Rotating Turbulent Flows
9. Mapping Closures for Turbulent Mixing and Reaction
10. Subgrid Length-Scales for Large-Eddy Simulation of Stratified Turbulence
11. Understanding Turbulence Via Vortex Dynamics
12. Heteroclinic Cycles, Exponential Tails, and Intermittency in Turbulence Production
13. Models for the Structure and Dynamics of Near Wall Turbulence
14. The Streamwise Evolution of Coherent Structures in the Axisymmetric Jet Mixing Layer
15. On the Complexity of Turbulence Near a Wall
16. Observations on the Proper Orthogonal Decomposition
17. Lumley’s Podt Definition of Large Eddies and a Trio of Numerical Procedures
18. Propagating Structures in Wall-Bounded Turbulent Flows
19. On The Hidden Beauty of the Proper Orthogonal Decomposition
20. Mach number Effects on Free and Wall Turbulent Structures In Light of Instability Flow Interactions
21. Toward A Constitutive Relation in Compressible Turbulence
22. Fluid Dynamics and Noise Emission Associated With Supersonic Jets
23. Formulation of the Statistical Equations of Turbulent Flows with Variable Density
24. A Density-Weighted Conditional Closure Model for Diffusion Flames
25. Interaction between Chemical Reaction and Turbulence in Supersonic Nonpremixed H 2 -Air Combustion
26. Compressible Turbulence and Shock Waves
27. Occurrence of Caustics for High Frequency Acoustic Waves Propagating Through Turbulent Fields
28. Direct Simulation of Compressible Turbulence in A Shear Flow
29. The Rapid Expansion of a Turbulent Boundary Layer In A Supersonic Flow
30. Structural Genesis in Wall-Bounded Turbulent Flows
31. Some Preliminary Experiments Concerning Thermal Dispersion in a Jet
32. The Vortex-Lattice Structure of Turbulent-Shear Flows
33. Scalar Transport in a Longitudinal Vorticity System in Boundary Layers
34. Conditionally Sampled Vorticities and Near-Wall Turbulence Structure
35. Modeling the Effect of Initial And Free-Stream Conditions on Circular Wakes
36. On The Aetiology of Shear Layer Vortices
37. Characterization and Compression of Turbulent Signals and Images Using Wavelet-Packets
38. Self-Preservation of Temperature Fluctuations in Isotropic Turbulence
39. The Turbulence Contribution to the Pressure Term in the Scalar-Flux Equations
40. Long-Time Behavior of Material-Surface Curvature in Isotropic Turbulence
41. Microbubble Drag Reduction on an Axisymmetric Body under an Applied Axial Pressure Gradient
42. Trilinear Coordinates In Fluid Mechanics
43. An Alternative Approach to Disturbances in Boundary Layers
Summary
Syllabi
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Stanford University
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Computer Science, Religious Studies, Engineering