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Mathematical and Physical Theory of Turbulence, Volume 250

recent research results, the authoritative contributors in Mathematical and Physical Theory of Turbulence promote further advances in the field;

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Navier-Stokes Equations And Turbulence

This book aims to bridge the gap between practising mathematicians and the practitioners of turbulence theory. It presents the mathematical;

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The Kolmogorov-Obukhov Theory of Turbulence

shuttle. The mathematical theory of turbulence has been an unsolved problems for 500 years and the development of the statistical theory of the;

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Modern Plasma Physics

researchers and graduate students in plasma physics, controlled fusion and related fields such as plasma astrophysics. Volume I develops the physical;

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Modern Plasma Physics

researchers and graduate students in plasma physics, controlled fusion and related fields such as plasma astrophysics. Volume I develops the physical;

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An Introduction to Turbulent Flow

subject of turbulence, developing both physical insight and the mathematical framework needed to express the theory. It begins with a review;

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Three-Dimensional Navier-Stokes Equations for Turbulence

energy dissipation, with particular emphasis on turbulence modeling. The mathematical detail is combined with coverage of physical terms such as;

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Statistical Turbulence Modelling For Fluid Dynamics - Demystified: An Introductory Text For Graduate Engineering Students

- Demystified differs from these and focuses on the physical interpretation of a broad range of mathematical models used to represent the time-averaged;

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Statistical Turbulence Modelling For Fluid Dynamics - Demystified

- Demystified differs from these and focuses on the physical interpretation of a broad range of mathematical models used to represent the time-averaged;

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Kolmogorov Spectra of Turbulence I

and modes. We shall show how the initial cascade hypothesis turns into an elegant theory yielding the Kolmogorov spectra of turbulence as;

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Mathematical Modeling

computer models of discrete systems; 4. mathematical models in economics; 5. non-linear models in chemical physics and physical chemistry; 6;

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Approximate Deconvolution Models of Turbulence

This volume presents a mathematical development of a recent approach to the modeling and simulation of turbulent flows based on methods for;

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Homogeneous Turbulence Dynamics

the results obtained in different research communities. Mathematical tools and advanced physical models are detailed in dedicated chapters.;

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Homogeneous Turbulence Dynamics

the results obtained in different research communities. Mathematical tools and advanced physical models are detailed in dedicated chapters.;

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Mean Field Theories And Dual Variation

A mathematical theory is introduced in this book to unify a large class of nonlinear partial differential equation (PDE) models for better;

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Trblnce Intro Fr Scntists & Engineers 2E

This is an advanced textbook on the subject of turbulence, and is suitable for engineers, physical scientists and applied mathematicians;

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Classical Kinetic Theory of Weakly Turbulent Nonlinear Plasma Processes

, including the foundational concepts and the mathematical and technical details. Some key obstacles to space plasma applications are also covered;

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Turbulence, Strange Attractors And Chaos

surprise the reader.The collection contains mathematical articles relevant to chaos, specific articles on the theory, and articles on applications;

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GROUP 24: Physical and Mathematical Aspects of Symmetries

One of the most enduring elements in theoretical physics has been group theory. GROUP 24: Physical and Mathematical Aspects of Symmetries;

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Plasma and Fluid Turbulence

Theory and modelling with direct numerical simulation and experimental observations are indispensable in the understanding of the evolution;

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Clifford Algebras and Their Applications in Mathematical Physics

chapters that provide a broad overview of cutting-edge topics in mathematical physics and the physical applications of Clifford algebras. This;

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Harmonic Analysis and Rational Approximation

mathematical concepts of approximation and Fourier theory. After a general introduction, Part II of this volume contains basic material on the complex;

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Mathematical & Numerical Foundations Of

-world turbulent flows. Mathematical and Numerical Foundations of Turbulence Models and Applications is an ideal reference for students;

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GROUP 24: Physical and Mathematical Aspects of Symmetries

One of the most enduring elements in theoretical physics has been group theory. GROUP 24: Physical and Mathematical Aspects of Symmetries;

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Turbulence, Coherent Structures, Dynamical Systems And Symme

and dynamics. Building on the existence of coherent structures - recurrent patterns - in turbulent flows, it describes mathematical methods;

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Principles of Turbulence Control

of theory, computation and experimental results to present and illustrate the methodologies. It is based on the three part structure, wall;

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Non-Equilibrium Statistical Mechanics and Turbulence

harmonized lecture courses by world class experts in statistical physics and turbulence: John Cardy introduces Field Theory and Non-Equilibrium;

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