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Plasma Engineering - Instabilities (An Engineer's Handbook on Plasma Instabilities).

Plasma Engineering - Instabilities (An Engineer's Handbook on Plasma Instabilities).
Author: Ferdinand F. Cap
Publisher:
Total Pages: 53
Release: 1974
Genre:
ISBN:

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This is the second partial delivery of an Engineer's Handbook on plasma instabilities and their use, control, stabilization and engineering application. The book will be necessary for design and feasibility studies of thermonuclear fusion and other plasma engineering devices. The second delivery presents chapters 2 and 3 of the book. These are 2. Basic Plasma Physics (quasineutrality, plasma frequency, Debye length, collision frequency, gyro-radius, classification of plasmas, equation of state, Saha equation, Spitzer formula, plasma thermodynamics, plasma theories) and 3. The Physics of Instabilities (definition of mathematical and physical instabilities, unstable solutions of linear and nonlinear ordinary differential equations, linearized stability analysis, oscillations and waves, phase, phase velocity, wave number, dispersion relation, Nyquist diagramme, growth rates etc).


Plasma Engineering: Instabilities, Partial Delivery Nr. 1 of the Engineers Handbook on Plasma Instabilities

Plasma Engineering: Instabilities, Partial Delivery Nr. 1 of the Engineers Handbook on Plasma Instabilities
Author: Ferdinand F. Cap
Publisher:
Total Pages: 38
Release: 1974
Genre:
ISBN:

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The report is the first part of an Engineer's Handbook on plasma instabilities and their use, control, stabilization and engineering application. The book will be necessary for design and feasibility studies of thermonuclear fusion and other plasma engineering devices. The first delivery describes the many useful technological applications of plasma and fusion devices, as well as the aim, purpose and scope of the book. (Modified author abstract).


Plasma Physics and Plasma Instabilities. A Handbook for Physicists and Engineers

Plasma Physics and Plasma Instabilities. A Handbook for Physicists and Engineers
Author: Ferdinand F. Cap
Publisher:
Total Pages: 76
Release: 1975
Genre: Plasma engineering
ISBN:

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This is the sixth partial delivery of an Engineer's Handbook on plasma instabilities and their use, control, stabilization and engineering application. The book will be necessary for design and feasibility studies of thermonuclear fusion and other plasma engineering devices. The sixth partial delivery presents chapter 8 (Plasma Containment). It covers the following sections: 8.1 Classification of containment systems; 8.2 Self-containment and the pinch-effect; 8.3 Magnetohydrostatics and magnetic surfaces; 8.4 Two-dimensional equilibria; 8.5 Toroidal equilibria; 8.6 Tokamaks and high beta systems; 8.7 Containment in Vlasov and CGL theories.


Handbook on Plasma Instabilities

Handbook on Plasma Instabilities
Author: Ferdinand Cap
Publisher: Elsevier
Total Pages: 481
Release: 2012-12-02
Genre: Science
ISBN: 0323148751

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Handbook on Plasma Instabilities, Volume 1 serves as an introduction to the field of plasma physics and plasma instabilities. Topics covered include basic plasma physics, statistical plasma theory, and magnetohydrodynamics (MHD), as well as the many-species theory and plasma containment. The motion of individual particles, oscillations and waves, and MHD instabilities of a real and an ideal plasma are also discussed. This volume is comprised of 13 chapters and begins with a survey of the various applications of plasma sciences and an overview of the fundamental concepts of plasma physics. Basic plasma physics, the physics of instabilities, orbit theory, kinetic theory, MHD, and the many-fluid theory are then presented. The following chapters focus on the principles of plasma containment and waves in plasmas, together with the basic features of plasma instabilities and their classification. The classical MHD stability theory of an ideal and of a real plasma is also described. The final chapter is devoted to drift waves and drift instabilities in inhomogeneous plasmas, paying particular attention to the theory of gradient instabilities and the microscopic theory of waves in non-homogeneous collisionless plasmas. This handbook is intended for beginners in plasma physics and plasma instabilities and for physicists and engineers working actively in the field.


Handbook on Plasma Instabilities

Handbook on Plasma Instabilities
Author: Ferdinand F. Cap
Publisher: Academic Press
Total Pages: 575
Release: 2013-09-11
Genre: Science
ISBN: 148327098X

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Handbook on Plasma Instabilities, Volume 2 consists of four chapters on plasma instabilities. Chapter 14 discusses the various aspects of microinstabilities. Beam-plasma systems are covered in Chapter 15, while the various stabilization methods are presented in Chapter 16. This book concludes with deliberations on parametric effects in Chapter 17. Other topics discussed include the microinstabilities of a homogeneous unmagnetized plasma; kinetic theory of macroscopic instabilities; basic beam physics; and beam-plasma instabilities. The magnetic field configuration stabilization; macroscopic nonmagnetic stabilization methods; parametric instabilities in homogeneous unmagnetized plasmas; and parametric effects in bounded and inhomogeneous plasmas are also elaborated in this text. This publication is beneficial to students and researchers conducting work on unstable plasma.


Handbook on Plasma Instabilities

Handbook on Plasma Instabilities
Author: Ferdinand F. Cap
Publisher: Academic Press
Total Pages: 494
Release: 2013-09-11
Genre: Science
ISBN: 1483271056

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Handbook on Plasma Instabilities, Volume 3, is primarily intended to serve as a sourcebook for obtaining quick information and literature references pertaining to a specific topic. Such a handbook has to be formulated in a way that enables understanding of any one section without requiring full understanding of any other section. Volume 1 (Chapters 1-13) presents the fundamental concepts of plasma physics with applications, and has more the nature of a textbook treating basic plasma physics, containment, waves, and macroscopic instabilities. Volume 2 (Chapters 14-17) covers various aspects of microinstabilities, beam plasma systems, stabilization methods, and parametric effects. The present volume (Chapters 18-22) starts with a discussion on feedback and dynamic stabilization using parametric and other effects. It then treats nonlinear effects and laser-plasma systems. One chapter is devoted to applications and use of instabilities. It concludes with a report on plasma waves and instabilities in cosmic space.


Instabilities in a Confined Plasma

Instabilities in a Confined Plasma
Author: A.B Mikhailovskii
Publisher: Routledge
Total Pages: 462
Release: 2017-10-05
Genre: Science
ISBN: 1351438174

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Instabilities in a Confined Plasma is entirely devoted to a theoretical exposition of the subject of plasma instabilities in confined systems. The book is an important contribution to the study of plasma instabilities, not only in fusion devices such as the Tokamak but also in astrophysical phenomena. It covers toroidal confinement systems, internal MHD modes, small-scale MHD instabilities, MHD internal kink modes, MHD modes in collisionless and neoclassical regimes, drift-MHD modes, external kink modes, and Alfven eigenmodes.


Plasma Engineering

Plasma Engineering
Author: Michael Keidar
Publisher: Academic Press
Total Pages: 442
Release: 2013-03-06
Genre: Technology & Engineering
ISBN: 0123859786

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Plasma Engineering is the first textbook that addresses plasma engineering in the aerospace, nanotechnology, and bioengineering fields from a unified standpoint. It covers the fundamentals of plasma physics at a level suitable for an upper level undergraduate or graduate student, and applies the unique properties of plasmas (ionized gases) to improve processes and performance over a wide variety of areas such as materials processing, spacecraft propulsion, and nanofabrication. The book starts by reviewing plasma particle collisions, waves, and instabilities, and proceeds to diagnostic tools, such as planar, spherical, and emissive probes, and the electrostatic analyzer, interferometric technique, and plasma spectroscopy. The physics of different types of electrical discharges are considered, including the classical Townsend mechanism of gas electrical breakdown and the Paschen law. Basic approaches and theoretical methodologies for plasma modeling are described, based on the fluid description of plasma solving numerically magnetohydrodynamic (MHD) equations and the kinetic model particle techniques that take into account kinetic interactions among particles and electromagnetic fields. Readers are then introduced to the widest variety of applications in any text on the market, including space propulsion applications and application of low-temperature plasmas in nanoscience and nanotechnology. The latest original results on cold atmospheric plasma (CAP) applications in medicine are presented. The book includes a large number of worked examples, end of chapter exercises, and historical perspectives. There is also an accompanying plasma simulation software covering the Particle in Cell (PIC) approach, available at http://www.particleincell.com/blog/2011/particle-in-cell-example/. This book is appropriate for grad level courses in Plasma Engineering/Plasma Physics in departments of Aerospace Engineering, Electrical Engineering, and Physics. It will also be useful as an introduction to plasma engineering and its applications for early career researchers and practicing engineers. The first textbook that addresses plasma engineering in the aerospace, nanotechnology, and bioengineering fields from a unified standpoint Includes a large number of worked examples, end of chapter exercises, and historical perspectives Accompanying plasma simulation software covering the Particle in Cell (PIC) approach, available at http://www.particleincell.com/blog/2011/particle-in-cell-example/


Fusion Plasma Physics

Fusion Plasma Physics
Author: Weston M. Stacey
Publisher: John Wiley & Sons
Total Pages: 674
Release: 2012-11-09
Genre: Science
ISBN: 3527669531

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This revised and enlarged second edition of the popular textbook and reference contains comprehensive treatments of both the established foundations of magnetic fusion plasma physics and of the newly developing areas of active research. It concludes with a look ahead to fusion power reactors of the future. The well-established topics of fusion plasma physics -- basic plasma phenomena, Coulomb scattering, drifts of charged particles in magnetic and electric fields, plasma confinement by magnetic fields, kinetic and fluid collective plasma theories, plasma equilibria and flux surface geometry, plasma waves and instabilities, classical and neoclassical transport, plasma-materials interactions, radiation, etc. -- are fully developed from first principles through to the computational models employed in modern plasma physics. The new and emerging topics of fusion plasma physics research -- fluctuation-driven plasma transport and gyrokinetic/gyrofluid computational methodology, the physics of the divertor, neutral atom recycling and transport, impurity ion transport, the physics of the plasma edge (diffusive and non-diffusive transport, MARFEs, ELMs, the L-H transition, thermal-radiative instabilities, shear suppression of transport, velocity spin-up), etc. -- are comprehensively developed and related to the experimental evidence. Operational limits on the performance of future fusion reactors are developed from plasma physics and engineering constraints, and conceptual designs of future fusion power reactors are discussed.


Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
Publisher:
Total Pages: 700
Release: 1975
Genre: Nuclear energy
ISBN:

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