Tag Archives: vortex

“Advanced Fluid Dynamics” ed. by Hyoung Woo Oh

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"Advanced Fluid Dynamics" ed. by Hyoung Woo Oh
InTeOpP | 2012 | ISBN: 9535102702 9789535102700 | 281 pages | PDF | 18 MB
This book is intended to serve as a reference text for presenting a broad range of topics on fluid dynamics to advanced scientists and researchers.
The chapters have been contributed by the prominent specialists in the field of fluid dynamics cover experimental and numerical fluid dynamics, aeroacoustics, multiphase flow analysis, convective instability, combustion, and turbulence modeling.

“Advanced Fluid Dynamics” ed. by Hyoung Woo Oh
Contents
Preface
1. An Experimental and Computational Study of the Fluid Dynamics of Dense Cooling Air-Mists
2. Direct Numerical Simulations of Compressible Vortex Flow Problems
3. Fluid Dynamics of Gas – Solid Fluidized Beds
4. Fuel Jet in Cross Flow – Experimental Study of Spray Characteristics
5. Influence of Horizontal Temperature Gradients on Convective Instabilities with Geophysical Interest
6. Internal Flows Driven by Wall-Normal Injection
7. Modelling of Turbulent Premixed and Partially Premixed Combustion
8. Multiscale Window Interaction and Localized Nonlinear Hydrodynamic Stability Analysis
9. Stability Investigation of Combustion Chambers with LES
10. Turbulent Boundary Layer Models: Theory and Applications
11. Unitary Qubit Lattice Gas Representation of 2D and 3D Quantum Turbulence
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Non-Linear Instabilities in Plasmas and Hydrodynamics

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Non-Linear Instabilities in Plasmas and Hydrodynamics
English | Physics, Mathematics | November 1999 | ISBN-10: 0750304839 | 180 pages | Djvu | 1 mb
For the first time in a single book, Non-Linear Instabilities in Plasmas and Hydrodynamics presents the underlying physics of fast secondary instabilities.

Non-Linear Instabilities in Plasmas and Hydrodynamics
This exceptionally well-written, introductory book discusses the basic ideas of the physics of secondary or induced, nonlinear instabilities in wave-sustaining media. The authors, world-renowned experts in the field, have brought together the results of papers scattered throughout the literature to explain subjects as diverse as fluctuation chaos, wave-turbulent instabilities, vortex dynamos, beam-plasma interactions, plasma confinement, and the origins of typhoons in the Earth's atmosphere and magnetic fields in galaxies. Paving the way for new and exciting research in the future, this broad, interdisciplinary book enables a wide range of physicists to apply the concepts discussed to obtain new results in plasma physics, space physics, hydrodynamics, and geophysics.
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“Advanced Methods for Practical Applications in Fluid Mechanics” ed. by Steven A. Jones

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"Advanced Methods for Practical Applications in Fluid Mechanics" ed. by Steven A. Jones
InTeOpP | 2012 | ISBN: 9535102419 9789535102410 | 241 pages | PDF | 15 MB
Central to this book are two ideas. The first is that Fluid Mechanics is relevant to a wide variety of problems that are priorities in the early 21st century, three of which are health, the environment, and energy. The second idea is that researchers in this field are applying novel methods to address these problems.

Even on its most basic level, Fluid Mechanics is challenging. Only in limited cases, for example, can the nonlinearities of the Navier-Stokes

“Advanced Methods for Practical Applications in Fluid Mechanics” ed. by Steven A. Jones
Contents
Preface
Part 1 General Fluid Mechanical Methods
1 Overview on Stereoscopic Particle Image Velocimetry
Part 2 Illustrative Applications
2 Two-Dimensional Supersonic Flow with Perpendicular Injection of the Gas
Part 3 Advances in Classical Approaches
3 Modification of the Charnock Wind Stress Formula to Include the Effects of Free Convection and Swell
4 Dynamically Incompressible Flow
5 Parallel Accelerated Group Iterative Algorithms in the Solution of Two-Space Dimensional Diffusion Equations
6 An Idealised Biphasic Poroelastic Finite Element Model of a Tibial Fracture
7 Radial Basis Functions Methods for Solving Radionuclide Migration. Phase Change and Wood Charring Problems
8 Simulation of Acoustic Sound Produced by Interaction Between Vortices and Arbitrarily Shaped Body in Multi-Dimensional Flows by the Vortex Method
Part 4 Non-Classical Approaches
9 Multiscale Particle-ln-Cell Method: From Fluid to Solid Mechanics
10 Topology Optimization of Fluid Mechanics Problems
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Knots and Applications

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Louis H. Kauffman, "Knots and Applications"
English | ISBN: 9810220049, 9810220308 | 1994 | 500 pages | PDF | 18 MB

Knots and Applications
This volume is a collection of research papers devoted to the study of relationships between knot theory and the foundations of mathematics, physics, chemistry, biology and psychology. Included are reprints of the work of Lord Kelvin (Sir William Thomson) on the 19th-century theory of vortex atoms, reprints of modern papers on knotted flux in physics and in fluid dynamics, and knotted wormholes in general relativity. It also includes papers on Witten's approach to knots via quantum field theory and applications of this approach to quantum gravity and the Ising model in three dimensions. Other papers discuss the topology of RNA folding in relation to invariants of graphs and Vassiliev invariants, the entanglement structures of polymers, the synthesis of molecular Mobius strips and knotted molecules. The book begins with an article on the applications of knot theory to the foundations of mathematics and ends with an article on topology and visual perception. This volume should be of interest to workers interested in new possibilities in the uses of knots and knot theory.
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Chaos and Structures in Nonlinear Plasmas

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W. Horton, Y-H Ichikawa, "Chaos and Structures in Nonlinear Plasmas"
English | ISBN: 9810226365 | 1996 | 356 pages | Djvu | 4 MB

Chaos and Structures in Nonlinear Plasmas
This book develops the subject of nonlinear plasma physics from a general physics perspective. It begins with a description of nonlinear oscillations, the parametric instability, the pendulum, and the nonlinear island overlap criterion. The Kolomogorov-Arnold-Moser (KAM) theory is also analyzed. Laboratory visualizations of the KAM theory are presented for experiments in toroidal plasma confinement and rotating fluids. The subjects of transport in ExB flows and geostrophic flows are developed in parallel, stressing the generality of the Charney-Hasegawa-Mima equation. The dual nature of wave turbulence and vortex dynamics is developed for plasmas and geophysical flows. The presentation of the subject of nonlinear maps shows how maps are related to the nonlinear dynamics in plasma physics problems. Numerous space plasma and fusion physics examples are developed throughout the book. The final chapter deals with turbulence theory, renormalized mode coupling equations, and Kolomogorov-type spectra as modified for anisotropic plasmas.
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Control of Fluid Flow

Petros D. Koumoutsakos, Igor Mezic, "Control of Fluid Flow"
English | 2006-07-11 | ISBN: 3540251405 | 239 pages | PDF | 6.6 mb
This monograph presents the state of the art of theory and applications in fluid flow control, assembling contributions by leading experts in the field. The book covers a wide range of recent topics including vortex based control algorithms, incompressible turbulent boundary layers, aerodynamic flow control, control of mixing and reactive flow processes or nonlinear modeling and control of combustion dynamics.

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