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Author: William A. Thue
ISBN13: 978-1439856437
Title: Electrical Power Cable Engineering (Power Engineering (Willis))
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ePUB size: 1668 kb
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Language: English
Category: Engineering
Publisher: CRC Press; 3 edition (December 13, 2011)
Pages: 460

Electrical Power Cable Engineering (Power Engineering (Willis)) by William A. Thue

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Discusses basic dielectric theory; conductors; cable characteristics; electrical properties of insulating materials; shielding power cables; sheaths, jackets, and armors; standards and specifications; splicing and terminating; ampacity; treeing; lightning protection; corrosion; and more. Contains a glossary of terms and essential tables and data.

Kenneth N. Mathes, Consulting Engineer, Schenectady, New York. f interest to cable engineers and technicians, especially those from the utilities, electric power industry, and power plants; cable manufacturers: and those interested in learning about cable engineering.

Learn from this free book and enhance your skills. Reliability Analysis for Asset Management of Electric Power Grids. Cory, N. Jenkins, . Ekanayake and G. Strbac. Power Over Ethernet Interoperability By Sanjaya Maniktala. Principles of Transistor Circuits.

Universities that offer electrical power courses. Cable manufacturers who would like to provide their employees with an oversight and understanding of power cables.

While this book highlights, cable technology is very intricate. Surely, electric, mechanical, andto a point, civil engineering are all included in interrelated ways. Obviously, it’s impossible in 1 publication to take care of each these facets in an entirely complete manner. On the other hand, the many components of electricity cables are thought with adequate detail to supply an understanding of the fundamental considerations in every single area. Reference to comprehensive sources provides a way for Those Who Have higher interest to pursue Certain topics.

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Fully updated, Electrical Power Cable Engineering, Third Edition again concentrates on the remarkably complex design, application, and preparation methods required to terminate and splice cables. This latest addition to the CRC Press Power Engineering series covers cutting-edge methods for design, manufacture, installation, operation, and maintenance of reliable power cable systems. It is based largely on feedback from experienced university lecturers who have taught courses on these very concepts.

The book emphasizes methods to optimize vital design and installation of power cables used in the interrelated fields of electrical, mechanical, and, to some extent, civil engineering. An in-depth exploration of power cable characteristics and applications, it illustrates the many factors that can hinder real-world cable performance. Content focuses on low and medium voltages, considering that these are used for the majority of cables in service globally. This edition also details techniques for testing shielded power cable systems in the field, demonstrating how conductor material size and design depend on ampacity, voltage regulation, and other factors.

Covering everything from manufacturing to testing, this resource will benefit:

Cable engineers and technicians (working for investor-owned utilities, rural electric cooperatives, and industrial manufacturers) who need to improve their oversight and understanding of power cables Universities that offer electrical power courses Professionals who must master new power cable terminology, engineering characteristics, and background information that will aid them in their decision making responsibilities

The author is a life fellow of the IEEE and one of the original developers of industry standards for cables and accessories. To simplify field fundamentals and techniques for less experienced readers, his book contains new, updated, and expanded chapters and an extensive glossary, in addition to useful references, tables, equations, and photographs. More experienced engineers will appreciate the book’s invaluable updates on the emerging materials, products, and concepts driving their dynamic field.