Impulse Breakdown of Liquids

The book describes the main physical processes and phenomena in pulsed electric breakdown. The knowledge and the control of the electric breakdown of liquids is important not only for the insulation inside power systems but it is also used for the creation and information of high voltage and high cu...

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Bibliographic Details
Main Authors: Ushakov, Vasily Y. (Editor), Klimkin, V. F. (Author), Korobeynikov, S. M. (Author)
Format: eBook
Language:English
Published: Berlin, Heidelberg Springer Berlin Heidelberg 2007, 2007
Edition:1st ed. 2007
Series:Power Systems
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Impulse Breakdown of Liquids  |h Elektronische Ressource  |c by Vasily Y. Ushakov, V. F. Klimkin, S. M. Korobeynikov ; edited by Vasily Y. Ushakov 
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300 |a XXVI, 398 p  |b online resource 
505 0 |a Behavior of Liquids in Strong Electric Fields -- Behaviour of the Gas Phase in Liquids in Strong Electric Fields -- Discharge Propagation in Short Gaps with a Quasiuniform Field -- Discharge Propagation in Gaps with a Non-Uniform Field -- Statistical Investigations of the Electrical Breakdown -- Basic Laws Describing of the Impulse Electric Strength of Liquids -- Physical Discharge Initiation (Ignition) Mechanisms -- Mechanisms of Discharge Propagation and their Applicability Limits 
653 |a Mechanical Power Engineering 
653 |a Electronics and Microelectronics, Instrumentation 
653 |a Electric power production 
653 |a Electrical Power Engineering 
653 |a Electronics 
653 |a Energy policy 
653 |a Energy Policy, Economics and Management 
653 |a Energy and state 
700 1 |a Klimkin, V. F.  |e [author] 
700 1 |a Korobeynikov, S. M.  |e [author] 
700 1 |a Ushakov, Vasily Y.  |e [editor] 
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520 |a The book describes the main physical processes and phenomena in pulsed electric breakdown. The knowledge and the control of the electric breakdown of liquids is important not only for the insulation inside power systems but it is also used for the creation and information of high voltage and high current pulses. Such high-voltage micro- and nanosecond pulses find wide application in experimental physics, electro discharge technology, physics of dielectrics, radar detection and ranging, high-speed photography. The nature of charge carriers, mechanism of formation and evolution of the gas phase, and their role in charge ignition (initiation) and development are considered. In particular, the spatiotemporal laws of propagation and parameters of charge channels are described in detail and the boundery conditions of the breakdown initiation are formulated. The monograph is useful for experts in high-voltage pulsed technology, physics of dielectrics, and electrical insulation as well as to students of the corresponding fields