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IEEE C62.2 1989

$113.21

IEEE Guide for the Application of Gapped Silicon-Carbide Surge Arresters for Alternating Current Systems

Published By Publication Date Number of Pages
IEEE 1989 69
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New IEEE Standard – Inactive – Withdrawn. The application of gapped silicon-carbide surge arresters to safeguard electric power equipment against the hazards of abnormally high voltage surges of various origins is addressed. General considerations with respect to overvoltages, valve arresters, protective levels, insulation-withstand, separation effects, and insulation coordination are discussed. Procedures for the protection of stations and distribution systems are provided.

PDF Catalog

PDF Pages PDF Title
1 Title page
3 Introduction
Participants
5 CONTENTS
7 1. Scope and References
1.1 Scope
1.2 References
11 2. General Considerations
2.1 Overvoltages
15 2.2 Valve Arresters
16 2.3 Protective Levels
17 2.4 Insulation Withstand
2.5 Separation Effects
2.6 Insulation Coordination
18 3. Protection of Stations
3.1 Introduction
3.2 Step-by-Step Procedures and Generalized Arrester Characteristics
19 3.3 Arrester Selection
24 3.4 Protective Levels of Arresters
26 3.5 Locating Arresters and Determining Voltage at Protected Equipment
28 3.6 Determining Insulation Strength
29 3.7 Evaluating Insulation Coordination
34 3.8 Transformer Series Windings, Nonloaded Windings, and Ungrounded Neutrals
3.9 Protection of Dry-Type Insulation
35 3.10 Protection of Shunt Capacitor Banks and Large-Capacitance Cables
3.11 Protection of Rotating Machines
36 3.12 Protection of Gas-Insulation Substations
37 4. Protection of Distribution Systems
4.1 Introduction
4.2 General Procedure
38 4.3 Selection of Arrester Ratings
39 4.4 Insulation Coordination
4.5 Arrester Connections
40 4.6 Protection of Distribution Circuits
41 4.7 Protection of Capacitor Banks
4.8 Protection of Switches, Reclosers, Etc.
4.9 Protection of Series Windings
44 4.10 Protection of Equipment on Underground Systems
45 4.11 Contaminated Atmospheres
4.12 Ferroresonance Effects
4.13 Disconnectors and External Gaps
46 4.14 Current-Limiting Fuses
5. Bibliography
47 Annex A—Protective Characteristics of Surge Arresters
54 Annex B—Surge Arrester Applications for EHV Systems
57 Annex C—Evaluation of Separation Effects in Simple Substations
62 Annex D—Definitions
68 Annex E—Coefficient-of-Grounding (COG) Calculations
69 Annex F—Arrester Stroke Stroke Currents—Arresters Connected to Distribution Lines
IEEE C62.2 1989
$113.21