
Turbulence, Coherent Structures, Dynamical Systems and Symmetry by Philip Holmes
Turbulence pervades our world, from weather patterns to the air entering our lungs. This book describes methods that reveal its structures and dynamics. Building on the existence of coherent structures - recurrent patterns - in turbulent flows, it describes mathematical methods that reduce the governing (Navier-Stokes) equations to simpler forms that can be understood more easily. This second edition contains a new chapter on the balanced proper orthogonal decomposition: a method derived from control theory that is especially useful for flows equipped with sensors and actuators. It also reviews relevant work carried out since 1995. The book is ideal for engineering, physical science and mathematics researchers working in fluid dynamics and other areas in which coherent patterns emerge.-
Theory and Computation in Hydrodynamic Stability
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GravityCapillary Free-Surface Flows
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Vortex Dynamics
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The Theory of Rotating Fluids
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Hydrodynamic Stability
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The Structure of Turbulent Shear Flow
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Match Pointers
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Microstructural Rheology of Complex Fluids
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Theory and Modeling of Rotating Fluids
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Turbulent Combustion
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Plasticity
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The Rotation of the Earth
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Ocean Acoustic Tomography
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The Excitation and Propagation of Elastic Waves
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Elastic Waves at High Frequencies
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The Physics and Mathematics of Adiabatic Shear Bands
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Finite Plastic Deformation of Crystalline Solids
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Colloidal Dispersions
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Theory of Solidification
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Acoustics of Fluid-Structure Interactions
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Sound Transmission through a Fluctuating Ocean
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Inverse Methods in Physical Oceanography
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Principles of Earthquake Source Mechanics
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Topographic Effects in Stratified Flows
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Reciprocity in Elastodynamics
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The Earth's Variable Rotation
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The Fluid Mechanics of Large Blood Vessels
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Theory of Laminar Flames
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Lagrangian Fluid Dynamics
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The Dynamics of Fluidized Particles
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Dynamic Fracture Mechanics
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An Introduction to Fourier Analysis and Generalised Functions
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Buoyancy Effects in Fluids
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Magnetoconvection
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Benard Cells and Taylor Vortices
'The book commands an impressive bibliography of 396 references, making it an invaluable reference for any researcher who wishes to get into this area of researchThe authors have done the best job possible to present this work as carefully and clearly as possible. I strongly recommend the book to everyone who wishes to master this research area, as well as everyone who wants to learn more about the proper orthogonal decomposition method. The research program detailed by the authors is a very promising approach to the problem of the coherent structures of turbulence. Active turbulence researchers, especially researchers who are mainly focused in the engineering applications of turbulence, will find this book a welcome addition to their library.' Eleftherios Gkioulekas, SIAM News
Philip Holmes is Eugene Higgins Professor of Mechanical and Aerospace Engineering and Professor of Applied and Computational Mathematics, Princeton University. He works on nonlinear dynamics and differential equations. John L. Lumley is Professor Emeritus in the Department of Mechanical and Aerospace Engineering, Cornell University. He has authored or co-authored over two hundred scientific papers and several books. Gahl Berkooz leads the area of Information Management for Ford Motor Company, covering all aspects of Business Information Standards and Integration. Clarence W. Rowley is an Associate Professor of Mechanical and Aerospace Engineering at Princeton University. His research interests lie at the intersection of dynamical systems, control theory and fluid mechanics.
| SKU | Unavailable |
| ISBN 13 | 9781107008250 |
| ISBN 10 | 1107008255 |
| Title | Turbulence, Coherent Structures, Dynamical Systems and Symmetry |
| Author | Philip Holmes |
| Series | Cambridge Monographs On Mechanics |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Cambridge University Press |
| Year published | 2012-02-23 |
| Number of pages | 402 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |


































