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Bonding of Underground Single-Core Cables and sheath losses
Details
Single-core underground power cables can induce voltages and currents in their metallic sheaths. The sheath induced currents are undesirable and generate power losses and reduce the cable ampacity whereas the induced voltages can generate electric shocks to the workers that keep the power line. This means that it is very important to know the values of sheath currents and induced voltages and the factors affecting them.So this bbbkdiscussed the following: - Calculations of the induced voltages in single-core cables with various voltages levels from 11 kV to 500 kV with briefly studying the factors affecting them. - Studying the factors affecting the sheath losses in single-core cables by calculating the sheath currents (eddy-circulating) and their sheath losses in single-core cables with various metallic sheath materials with taking into consideration the following factors: Types of sheath bonding methods (single-point bonding, two-points bonding, cross bonding) and cable layouts (trefoil, flat), cable parameters, cable spacing, sheath resistance, phase rotation, conductor current, power frequency, the minor section length in cross bonding.
Autorentext
Dr.Ossama El-Sayed Gouda is the professor of electrical Power engineering and high voltage in the Dept.of Electrical power,Faculty of Engineering,Cairo University since 1993.He conducted more than 110 papers in the field of Electrical power and High voltage engineering.Now he is the head of High Voltage Group,Cairo university
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783848433940
- Auflage Aufl.
- Sprache Englisch
- Genre Physik & Astronomie
- Größe H8mm x B220mm x T150mm
- Jahr 2013
- EAN 9783848433940
- Format Kartonierter Einband (Kt)
- ISBN 978-3-8484-3394-0
- Titel Bonding of Underground Single-Core Cables and sheath losses
- Autor Ossama Gouda , Adel Farag
- Untertitel Bending Methods of Underground Single Core Power Cables and Factors affecting the Sheath Losses
- Gewicht 224g
- Herausgeber LAP Lambert Academic Publishing
- Anzahl Seiten 156