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Lightning Interaction with Power Systems: 2 Volume Set

Alexandre Piantini (Herausgeber)

Media-Kombination
952 Seiten
2020
Institution of Engineering and Technology
978-1-83953-094-4 (ISBN)
279,95 inkl. MwSt
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This book assesses how global lightning may respond to global climate change, provides thorough coverage of the lightning phenomenon and its interaction with various objects, and covers methods for the effective protection of structures and systems.
The need to improve the reliability and robustness of power systems and smart grids makes protection of sensitive equipment and power transmission and distribution lines against lightning-related effects a primary concern. Renewable electricity generation capacity has been increasing all over the world, and lightning can cause failures either by hitting the turbines or panels directly or inducing transients on the control systems that lead to equipment failure, malfunction or degradation.


This two-volume set assesses how global lightning may respond to global climate change, provides thorough coverage of the lightning phenomenon and its interaction with various objects, and covers methods for the effective protection of structures and systems. It is a valuable reference for researchers in the fields of lightning and power systems, for transmission and distribution line engineers and designers, and is a useful text for related advanced courses.


Volume 1 covers fundamentals and modelling of lightning interaction with power systems, including lightning and climate change; lightning phenomenon and parameters for engineering applications; lightning return stroke models for electromagnetic field calculations; lightning geolocation information for power system analyses; lightning attachment to overhead power lines; field-to-transmission line coupling models; lightning response of grounding electrodes; surge protective devices; modelling of power transmission line components; and modelling of power distribution components.


Volume 2 addresses various applications including the application of the Monte Carlo method to lightning protection and insulation coordination practices; lightning interaction with power substations; lightning interaction with power transmission lines; lightning interaction with medium-voltage overhead power distribution systems; lightning interaction with low-voltage overhead power distribution networks; lightning protection of structures and electrical systems inside of buildings; lightning protection of smart grids; lightning protection of wind power systems; lightning protection of photovoltaic systems; measurement of lightning currents and voltages; application of the FDTD method to lightning studies; and software tools for lightning performance assessment.

Alexandre Piantini is a Professor at the University of Sao Paulo, Brazil, where he heads the Lightning and High Voltage Research Centre.

Volume 1

Chapter 1: Lightning and climate change
Chapter 2: Lightning phenomenon and parameters for engineering application
Chapter 3: Lightning return stroke models for electromagnetic field calculations
Chapter 4: Lightning geolocation information for power system analyses
Chapter 5: Lightning attachment to overhead power lines
Chapter 6: Field-to-transmission line coupling models
Chapter 7: Lightning response of grounding electrodes
Chapter 8: Surge-protective devices
Chapter 9: Modelling of power transmission line components
Chapter 10: Modelling of power distribution components



Volume 2

Chapter 1: Application of the Monte Carlo method to lightning protection and insulation coordination practices
Chapter 2: Lightning interaction with power substations
Chapter 3: Lightning interaction with power transmission lines
Chapter 4: Lightning interaction with medium-voltage overhead power distribution systems
Chapter 5: Lightning interaction with low-voltage overhead power distribution networks
Chapter 6: Lightning protection of structures and electrical systems inside of buildings
Chapter 7: Lightning protection of Smart Grids
Chapter 8: Lightning protection of wind power systems
Chapter 9: Renewable energy systems - photovoltaic systems
Chapter 10: Measurement of lightning currents and voltages
Chapter 11: Application of the FDTD method to lightning studies
Chapter 12: Software tools for the lightning performance assessment

Erscheint lt. Verlag 31.1.2020
Reihe/Serie Energy Engineering
Verlagsort Stevenage
Sprache englisch
Maße 156 x 234 mm
Themenwelt Technik Elektrotechnik / Energietechnik
ISBN-10 1-83953-094-4 / 1839530944
ISBN-13 978-1-83953-094-4 / 9781839530944
Zustand Neuware
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