5 edition of Kinetics of nonequilibrium low-temperature plasmas found in the catalog.
|Statement||L.M. Biberman, V.S. Vorobʹev, and I.T. Yakubov ; translated from Russian by Steve Torstveit.|
|Contributions||Vorobʹev, V. S., I͡A︡kubov, I. T.|
|LC Classifications||TA2020 .B513 1987|
|The Physical Object|
|Pagination||xiv, 483 p. :|
|Number of Pages||483|
|LC Control Number||87012018|
This article presents an overview of recent advances in the field of electron kinetics in low-temperature plasmas (LTPs). It also provides author's views on where the field is headed and suggests promising strategies for further by: 7. The Nonequilibrium Gas and Plasma Dynamics Laboratory (NGPD) at the Aerospace Engineering Department of the University of Michigan is headed by Professor Iain Boyd and performs research of nonequilibrium gases and plasmas involving the development of physical models for various gas systems of interest, numerical algorithms on the latest .
ELEMENTARY CHEMICAL PROCESSES AND KINETICS IN A NON-EQUILIBRIUM AND QUASI-EQUILIBRIUM PLASMA L. POLAK Institute for Petrochemical Synthesis, Academy of Sciences of the USSR, Lenin Prosp Moscow V, USSR ABSTRACT Main problems are considered of the non-equilibrium chemical kinetics which includes plasma chemical kinetics . Different standard approaches such as master equations, kinetic equations and linear response theory, are derived after special assumptions. This allows for an insight into the problems of nonequilibrium physics, a discussion of the limits of the approaches, and suggestions for improvements.
This book discusses the basic principles of the theory of kinetic processes in molecular gases and low-temperature plasmas, including plasma-surface interaction. Emphasis is placed on the analysis of translational, rotational, vibrational and electronically excited state kinetics, coupled to the electron Boltzmann equation. Repetitively Pulsed Nonequilibrium Plasmas for Magnetohydrodynamic Flow Control and Plasma-Assisted Combustion. Nonequilibrium Plasma: Basic Concepts and Applications in Internal Combustion Engines. Effect of Singlet Delta Oxygen Production on the Kinetics of Low Temperature Repetitively Pulsed Nonequilibrium by:
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Buy Kinetics of Nonequilibrium Low-Temperature Plasmas on FREE SHIPPING on qualified orders Kinetics of Nonequilibrium Low-Temperature Plasmas: Biberman, L.M.: : BooksCited by: The first research on plasma was done in connection with the study of electrical discharges in gases.
The focus of attention for physicists was the partially ionized plasma, the kinetics of which is governed by various collisional and radiative processes. The choice of Brand: Springer US. The book treats problems of the ionization, excitation, recombination, energy partition and energy transfer kinetics of low-temperature, weakly ionized plasmas.
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Kinetics of Nonequilibrium Low-Temperature Plasmas by L. Biberman,available at Book Depository with free delivery worldwide.
The book treats problems of the ionization, excitation, recombination, energy partition and energy transfer kinetics of low-temperature, weakly ionized plasmas. Following a review of the parameters characterizing a low temperature plasma, including quasi-neutrality and equilibrium, consideration is given to the elementary processes of elastic and inelastic collision and Cited by: This book deals with the physics of low temperature plasmas of atomic and molecular gases.
Several diagnostic methods for nonequilibrium plasma are described. The relevant elementary processes governing the kinetics and transport of atomic and chemically active molecular plasmas are discussed and numerical models of plasmas aimed at Cited by: Non-equilibrium in low-temperature plasmas Francesco Taccognaa and Giorgio Dilecce CNR NANOTEC – PLasMI Lab, via Amendola/D, Bari, Italy Received 26 July / Received in ﬁnal form 4 October Published online 22 November – c EDP Sciences, Societ`a Italiana di Fisica, Springer-Verlag Abstract.
6 1 An Introduction to Nonequilibrium Plasmas at Atmospheric Pressure. Surface Ionization Mechanisms. Next to the bulk gas, the presence of a dielectric or metallic surface can also affect the discharge signiﬁcantly. It will modify the electric ﬁeld conﬁguration, and it is able to provide electrons.
A non-equilibrium, steady-state collisional-radiative kinetics model is developed to study atmospheric pressure discharges produced in He mixed with dry air (79% N2 and 21% O2).
The model is based on a self-consistent solution of the Boltzmann equation for the electron energy distribution function coupled to a system of non-linear equations for species that govern plasma Cited by: 5.
Topical Review Foundations of modelling of nonequilibrium low-temperature plasmas L L Alves1, A Bogaerts2, V Guerra1 and M M Turner3 1Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico, Universidade de Lisboa, Av.
Rovisco Pais, Lisboa, Portugal 2Department of Chemistry, Research Group PLASMANT, University of Antwerp, Cited by: Free 2-day shipping on qualified orders over $ Buy Kinetics of Nonequilibrium Low-Temperature Plasmas (Paperback) at Plasma kinetics in atmospheric gases M.
Capitelli, C.M. Ferreira, B.F. Gordiets, A.I. Osipov This book describes the coupling between elementary processes, plasma kinetics and electrodynamics in different types of electrical discharges and under non-equilibrium conditions.
Kinetics and Spectroscopy of Low Temperature Plasmas derives in a full self-consistent way the electron kinetic theory used to describe low temperature plasmas created in the laboratory with an electrical discharge, and presents the main optical spectroscopic diagnostics used to characterize such plasmas.
This option allows users to search by Publication, Volume and Page Selecting this option will search the current publication in context. Selecting this option will search all publications across the Scitation platform Selecting this option will search all Cited by: A kinetic model describing the time evolution of ~70 individual CO 2 (X 1 Σ +) vibrational levels during the afterglow of a pulsed DC glow discharge is developed in order to contribute to the understanding of vibrational energy transfer in CO 2 plasmas.
The results of the simulations are compared against in situ Fourier transform infrared spectroscopy data Cited by: Chemical Physics of Low-Temperature Plasmas (in honour of Prof Mario Capitelli) Edited by Claudine Gorse, Khaled Hassouni, Annarita Laricchiuta Volume Kinetics of methane partial oxidation by nonequilibrium low temperature plasma.
In book: Nonequilibrium Processes in Plasma, Combustion, and Atmosphere, Publisher: TORUS PRESS, Moscow, Editors. Book Description. Atmospheric-pressure plasmas continue to attract considerable research interest due to their diverse applications, including high power lasers, opening switches, novel plasma processing applications and sputtering, EM absorbers and reflectors, remediation of gaseous pollutants, excimer lamps, and other noncoherent light sources.
Abstract Citations References Co-Reads Similar Papers Graphics Metrics Export Citation NASA/ADS. Kinetics of Nonequilibrium Low-Temperature Plasmas Biberman, L. M.; Vorob'ev, V. Cited by:. An interesting case study for understanding the needs of cross sections in plasma chemistry is the kinetics of negative ions (H − /D −) under nonequilibrium plasma conditions.
The accepted mechanism for the production of negative ions is dissociative attachment from vibrationally excited molecules H 2 (v)/D 2 (v) (Gorse et al., Abstract.
The understanding of kinetic processes in low temperature plasmas of atmospheric gases is of great interest in various branches of modern physics and chemistry, such as discharge physics, plasma chemistry, chemistry and optics of the atmosphere, nonequilibrium gas dynamics, laser physics and laser chemistry, and physics of the ionosphere.Title: Aero-propulsion Applications of Non-equilibrium Plasma.
ABSTRACT Nonequilibrium plasma/non-thermal plasma/cold plasmas are being used in a wide range of new applications in aeronautics, active flow control, heat transfer reduction, plasma-assisted ignition and combustion, noise suppression, and power Size: 2MB.