Electrical Power Transmission System Engineering

Designed for senior-level undergraduate and beginning-level graduate students, the book serves as a text for a two-semester course or, by judicious selection, the material

Author: Turan Gonen

Publisher: CRC Press

ISBN: 9781482232233

Category: Medical

Page: 1093

View: 398

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Electrical Power Transmission System Engineering: Analysis and Design is devoted to the exploration and explanation of modern power transmission engineering theory and practice. Designed for senior-level undergraduate and beginning-level graduate students, the book serves as a text for a two-semester course or, by judicious selection, the material may be condensed into one semester. Written to promote hands-on self-study, it also makes an ideal reference for practicing engineers in the electric power utility industry. Basic material is explained carefully, clearly, and in detail, with multiple examples. Each new term is defined as it is introduced. Ample equations and homework problems reinforce the information presented in each chapter. A special effort is made to familiarize the reader with the vocabulary and symbols used by the industry. Plus, the addition of numerous impedance tables for overhead lines, transformers, and underground cables makes the text self-contained. The Third Edition is not only up to date with the latest advancements in electrical power transmission system engineering, but also: Provides a detailed discussion of flexible alternating current (AC) transmission systems Offers expanded coverage of the structures, equipment, and environmental impacts of transmission lines Features additional examples of shunt fault analysis using MATLAB® Also included is a review of the methods for allocating transmission line fixed charges among joint users, new trends and regulations in transmission line construction, a guide to the Federal Energy Regulatory Commission (FERC) electric transmission facilities permit process and Order No. 1000, and an extensive glossary of transmission system engineering terminology. Covering the electrical and mechanical aspects of the field with equal detail, Electrical Power Transmission System Engineering: Analysis and Design, Third Edition supplies a solid understanding of transmission system engineering today.
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Electric Power Transmission and Distribution

Written in a simple, easy-to-understand manner, this book introduces the reader to electrical, mechanical and economic aspects of the design and construction of electric power transmission and distribution systems.

Author: S. Sivanagaraju

Publisher: Pearson Education India

ISBN: 8131707911

Category: Electric power distribution

Page: 632

View: 826

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Electric Power Transmission and Distribution is a comprehensive text, designed for undergraduate courses in power systems and transmission and distribution. A part of the electrical engineering curriculum, this book is designed to meet the requirements of students taking elementary courses in electric power transmission and distribution. Written in a simple, easy-to-understand manner, this book introduces the reader to electrical, mechanical and economic aspects of the design and construction of electric power transmission and distribution systems.
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Electrical Power Transmission and Distribution

Recognize the Signs of Aging in Equipment—and Learn How to Slow It A reference manual for engineering, maintenance, and training personnel, this book analyzes the factors that cause materials to deteriorate and explains what you can do to ...

Author: Bella H. Chudnovsky

Publisher: CRC Press

ISBN: 9781351832496

Category: Science

Page: 411

View: 334

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Electrical distribution and transmission systems are complex combinations of various conductive and insulating materials. When exposed to atmospheric corrosive gases, contaminants, extreme temperatures, vibrations, and other internal and external impacts, these systems deteriorate, and sooner or later their ability to function properly is destroyed. Electrical Power Transmission and Distribution: Aging and Life Extension Techniques offers practical guidance on ways to slow down the aging of these electrical systems, improve their performance, and extend their life. Recognize the Signs of Aging in Equipment—and Learn How to Slow It A reference manual for engineering, maintenance, and training personnel, this book analyzes the factors that cause materials to deteriorate and explains what you can do to reduce the impact of these factors. In one volume, it brings together extensive information previously scattered among manufacturers’ documentation, journal papers, conference proceedings, and general books on plating, lubrication, insulation, and other areas. Shows you how to identify the signs of equipment aging Helps you understand the causes of equipment deterioration Suggests practical techniques for protecting electrical apparatus from deterioration and damage Supplies information that can be used to develop manuals on proper maintenance procedures and choice of materials Provides numerous examples from industry This book combines research and engineering material with maintenance recommendations given in layperson’s terms, making it useful for readers from a range of backgrounds. In particular, it is a valuable resource for personnel responsible for the utilization, operation, and maintenance of electrical transmission and distribution equipment at power plants and industrial facilities.
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Electric Power Generation Transmission and Distribution Third Edition

Featuring contributions from worldwide leaders in the field, the carefully crafted Electric Power Generation, Transmission, and Distribution, Third Edition (part of the five-volume set, The Electric Power Engineering Handbook) provides ...

Author: Leonard L. Grigsby

Publisher: CRC Press

ISBN: 9781439856284

Category: Technology & Engineering

Page: 789

View: 593

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Featuring contributions from worldwide leaders in the field, the carefully crafted Electric Power Generation, Transmission, and Distribution, Third Edition (part of the five-volume set, The Electric Power Engineering Handbook) provides convenient access to detailed information on a diverse array of power engineering topics. Updates to nearly every chapter keep this book at the forefront of developments in modern power systems, reflecting international standards, practices, and technologies. Topics covered include: Electric power generation: nonconventional methods Electric power generation: conventional methods Transmission system Distribution systems Electric power utilization Power quality L.L. Grigsby, a respected and accomplished authority in power engineering, and section editors Saifur Rahman, Rama Ramakumar, George Karady, Bill Kersting, Andrew Hanson, and Mark Halpin present substantially new and revised material, giving readers up-to-date information on core areas. These include advanced energy technologies, distributed utilities, load characterization and modeling, and power quality issues such as power system harmonics, voltage sags, and power quality monitoring. With six new and 16 fully revised chapters, the book supplies a high level of detail and, more importantly, a tutorial style of writing and use of photographs and graphics to help the reader understand the material. New chapters cover: Water Transmission Line Reliability Methods High Voltage Direct Current Transmission System Advanced Technology High-Temperature Conduction Distribution Short-Circuit Protection Linear Electric Motors A volume in the Electric Power Engineering Handbook, Third Edition. Other volumes in the set: K12648 Power Systems, Third Edition (ISBN: 9781439856338) K13917 Power System Stability and Control, Third Edition (ISBN: 9781439883204) K12650 Electric Power Substations Engineering, Third Edition (ISBN: 9781439856383) K12643 Electric Power Transformer Engineering, Third Edition (ISBN: 9781439856291)
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The Development of Electric Power Transmission

The 'IEEE Case Histories of Achievement in Science and Technology' series takes a close look at major developments and applications of particular fields in electrotechnology and presents first-hand accounts of significant contributions.

Author: John Casazza

Publisher: Institute of Electrical & Electronics Engineers(IEEE)

ISBN: STANFORD:36105016349446

Category: Technology & Engineering

Page: 140

View: 899

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Pole and Tower Lines for Electric Power Transmission

PREFACE The rapid growth of the electric light and power industry within the last decade has caused an enormous increase in both the number and length of transmission and distribution lines . From a comparatively unimportant detail - of ...

Author: R. D. Coombs

Publisher: Watchmaker Publishing

ISBN: 1929148429

Category: Technology & Engineering

Page: 284

View: 894

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Electric Power Transmission System Engineering

Library of Congress Cataloging in Publication Data: Gönen, Turan. Electric power transmission system engineering. “Wiley-Interscience publication.” Bibliography: p. 1. Electric power transmission. I. Title. TK3001.

Author: Turan Gönen

Publisher: Wiley-Interscience

ISBN: UOM:39015013044816

Category: Technology & Engineering

Page: 723

View: 214

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This is a book for engineers involved with the mechanical design of electrical transmission systems. It includes a review of transmission system engineering and the basics of analysis, and then goes on to cover in detail topics such as the construction of overhead lines, structural supports, insulation requirements, vibration, sag and tension analysis, right-of-way planning and methods of locating structures and underground cables. Also included is material about cost analysis methods and techniques which are unique to transmission line design where fixed costs are shared among joint users. In addition to this the development of system reliability reporting to conform to standard requirements is covered, along with a modern, comprehensive treatment of the design aspects of electrical power systems. New topics of importance, such as fault analysis, system protection, line balancing and economic analysis are contained, with a brief review of analytical techniques which are pre-requisites to designing a system or component.
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Electric Power Transmission

electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of highvoltage power transmission lines are developed used to ...

Author: Dr. Hidaia Mahmood Alassouli

Publisher: Dr. Hidaia Mahmood Alassouli

ISBN: 9783969170304

Category: Technology & Engineering

Page: 243

View: 293

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This book includes my lecture notes for electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of high-voltage power transmission lines are developed used to determine the equivalent circuit of a three-phase transmission line.The book is divided to different learning outcomesPart 1- Describe the power transmission process, from generation to distribution.Part 2- Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.Part 1: Describe the power transmission process, from generation to distribution.Describe the components of an electrical power system.Identify types of power lines, standard voltages, and components of high-voltage transmission lines (HVTL).Describe the construction of a transmission line, galloping lines, corona effect, insulator pollution, and lightning strikes.Explain transmission system stability in regards to power transfer, power flow division, and transfer impedance.Part 2: Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.List the types of conductors used in power transmission line.Develop the expression for the inductance and capacitance of a simple, single-phase, two wire transmission line composed of solid round conductors.Deduce the expression for the inductance and capacitance of a simple, single-phase composite (stranded) conductor line.Derive the expression for the inductance and capacitance of three-phase lines having symmetrically and asymmetrically spacing and for bundled conductors.Discuss the effect of earth on the capacitance of three-phase transmission lines.Derive the short transmission lines models and medium transmission lines models.
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Electric Power Transmission

This book includes my lecture notes for electrical power transmission course.

Author: Dr. Hidaia Mahmood Alassouli

Publisher: Lulu Press, Inc

ISBN: 9781716727276

Category: Technology & Engineering

Page:

View: 748

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This book includes my lecture notes for electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of high-voltage power transmission lines are developed used to determine the equivalent circuit of a three-phase transmission line. The book is divided to different learning outcomes Part 1- Describe the power transmission process, from generation to distribution. Part 2- Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line. Part 1: Describe the power transmission process, from generation to distribution. • Describe the components of an electrical power system. • Identify types of power lines, standard voltages, and components of high-voltage transmission lines (HVTL). • Describe the construction of a transmission line, galloping lines, corona effect, insulator pollution, and lightning strikes. • Explain transmission system stability in regards to power transfer, power flow division, and transfer impedance. Part 2: Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line. • List the types of conductors used in power transmission line. • Develop the expression for the inductance and capacitance of a simple, single-phase, two wire transmission line composed of solid round conductors. • Deduce the expression for the inductance and capacitance of a simple, single-phase composite (stranded) conductor line. • Derive the expression for the inductance and capacitance of three-phase lines having symmetrically and asymmetrically spacing and for bundled conductors. • Discuss the effect of earth on the capacitance of three-phase transmission lines. • Derive the short transmission lines models and medium transmission lines models.
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