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Statistical Theories and Computational Approaches to Turbulence

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Cover of 'Statistical Theories and Computational Approaches to Turbulence'

Table of Contents

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    Book Overview
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    Chapter 1 Computational Challenges for Global Dynamics of Fully Developed Turbulence in the Context of Geophysical Flows
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    Chapter 2 Structural and Statistical Aspects of Stably Stratified Turbulence
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    Chapter 3 Dynamics of Rotating Stably Stratified Flows
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    Chapter 4 An Introduction to Mixing in a Stably Stratified Fluid
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    Chapter 5 Linear Processes in Stratified Turbulence with Rotation or Mean Shear
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    Chapter 6 Very Large Anisotropic Scales in Turbulent Wall-Bounded Flows
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    Chapter 7 Turbulent Plume Diffusion in a Pipe Flow by the PDF Method
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    Chapter 8 A Hybrid RANS/LES Calculation of Turbulent Channel Flow
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    Chapter 9 Anisotropy versus Universality in Shear Flow Turbulence
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    Chapter 10 LES Study on the Very Large-Scale Structures of Wall-Bounded Turbulence and an Effect of Thermal Stratification
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    Chapter 11 High Resolution DNS of Incompressible Homogeneous Forced Turbulence —Time Dependence of the Statistics—
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    Chapter 12 Subgrid Models for Two-Dimensional Turbulence based on Lagrangian Spectral Theory
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    Chapter 13 LES Modelings based on the Lagrangian Renormalized Approximation
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    Chapter 14 LES of Stably Stratified Turbulence
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    Chapter 15 The Eulerian Time Correlation Function in Homogeneous Isotropic Turbulence
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    Chapter 16 Predictability of 3D Isotropic Turbulence —Effect of Data Assimilation—
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    Chapter 17 Orthonormal Divergence-Free Wavelet Analysis of Spatial Correlation between Kinetic Energy and Nonlinear Transfer in Turbulence
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    Chapter 18 Statistics of the Energy Dissipation Rate in Turbulence
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    Chapter 19 Lyapunov Exponent of the System Described by Kuramoto-Sivashinsky Equation
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    Chapter 20 Toward a Statistical Ocean Dynamics
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    Chapter 21 Internal-Wave-Packet Propagation and Breaking
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    Chapter 22 Pattern Formation in Two-Dimensional Turbulence on a Rotating Sphere
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    Chapter 23 Quasi-Geostrophic Turbulence in a One-Layer Ocean affected by Horizontal Divergence
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    Chapter 24 Self-Similarity of Decaying Two-Dimensional Turbulence governed by the Charney—Hasegawa—Mima Equation
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    Chapter 25 A Fast Method for the Calculation of the Fluid Flow on a Sphere using a Combined Compact Difference Scheme
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    Chapter 26 Panel Session 1 Advanced Computational Approaches in Turbulence Research
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    Chapter 27 Panel Session 2 Turbulence Research for Geophysical Applications
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Title
Statistical Theories and Computational Approaches to Turbulence
Published by
Springer Japan, January 2003
DOI 10.1007/978-4-431-67002-5
ISBNs
978-4-43-167004-9, 978-4-43-167002-5
Editors

Kaneda, Yukio, Gotoh, Toshiyuki

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 3 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 33%
Student > Doctoral Student 1 33%
Unknown 1 33%
Readers by discipline Count As %
Engineering 2 67%
Unknown 1 33%