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Introductory technical guidance for civil engineers, electrical engineers and construction managers interested in underground and underwater electric power distribution cables. Here is what is discussed: 1. BASIC DESIGN, 2. GENERAL CONSTRUCTION GUIDANCE, 3. CABLE SAFETY, 4. STRUCTURE SAFETY, 5. FREQUENCY OF UNDERGROUND SYSTEM INSPECTIONS, 6. STRUCTURE INSPECTIONS, 7. CABLE INSPECTIONS, 8. UNDERGROUND EQUIPMENT INSPECTIONS, 9. STRUCTURE MAINTENANCE AND REPAIR, 10. DUCT LINE MAINTENANCE AND REPAIR, 11. CABLE FAULTS, 12. VISUAL METHODS OF CABLE FAULT LOCATING, 13. DETERMINING TYPE OF CABLE FAULT, 14. CABLE FAULT LOCATING TEST METHODS, 15. SIMPLIFYING CABLE FAULT LOCATING, 16. CABLE FA.ULT LOCATING EQUIPMENT, 17. TRACING THE CABLE FAULT SIGNAL, 18. SELECTING CABLE FAULT LOCATING METHODS, 19. UNDERGROUND CABLE REPAIRS, 20. SUBMARINE CABLE REPAIRS, 21. CABLE REPAIR SAFETY, 22. MAKING CABLE REPAIRS, 23. SOLID DIELECTRIC CABLE REPAIRS, 24. OTHER CABLE INSULATION AND COVERING REPAIRS, 25. OTHER CABLE COMPONENT REPAIRS, 26. CABLE TESTS, 27. CABLE INSULATION RESISTANCE TESTS, 28. CABLE OVERVOLTAGE TESTS, 29. CABLE POWER FACTOR TESTS, 30. CABLE MOISTURE TESTS, 31. CABLE TEST RECORDS.
This publication provides technical guidance for professional engineers, maintenance managers and construction managers interested in maintenance of underground and submarine cables. Here is what is discussed: 1. BASIC DESIGN 2. GENERAL CONSTRUCTION GUIDANCE 3. CABLE SAFETY 4. STRUCTURE SAFETY 5. FREQUENCY OF UNDERGROUND SYSTEM INSPECTIONS 6. STRUCTURE INSPECTIONS 7. CABLE INSPECTIONS 8. UNDERGROUND EQUIPMENT INSPECTIONS 9. STRUCTURE MAINTENANCE AND REPAIR 10. DUCT LINE MAINTENANCE AND REPAIR 11. CABLE FAULTS 12. VISUAL METHODS OF CABLE FAULT LOCATING 13. DETERMINING TYPE OF CABLE FAULT 14. CABLE FAULT LOCATING TEST METHODS 15. SIMPLIFYING CABLE FAULT LOCATING 16. CABLE FAULT LOCATING EQUIPMENT 17. TRACING THE CABLE FAULT SIGNAL 18. SELECTING CABLE FAULT LOCATING METHODS 19. UNDERGROUND CABLE REPAIRS 20. SUBMARINE CABLE REPAIRS 21. CABLE REPAIR SAFETY 22. MAKING CABLE REPAIRS 23. SOLID DIELECTRIC CABLE REPAIRS 24. OTHER CABLE INSULATION AND COVERING REPAIRS 25. OTHER CABLE COMPONENT REPAIRS 26. CABLE TESTS 27. CABLE INSULATION RESISTANCE TESTS 28. CABLE OVERVOLTAGE TESTS 29. CABLE POWER FACTOR TESTS 30. CABLE MOISTURE TESTS 31. CABLE TEST RECORDS
In our "wireless" world it is easy to take the importance of the undersea cable systems for granted, but the stakes of their successful operation are huge, as they are responsible for carrying almost all transoceanic Internet traffic. In The Undersea Network Nicole Starosielski follows these cables from the ocean depths to their landing zones on the sandy beaches of the South Pacific, bringing them to the surface of media scholarship and making visible the materiality of the wired network. In doing so, she charts the cable network's cultural, historical, geographic and environmental dimensions. Starosielski argues that the environments the cables occupy are historical and political realms, where the network and the connections it enables are made possible by the deliberate negotiation and manipulation of technology, culture, politics and geography. Accompanying the book is an interactive digital mapping project, where readers can trace cable routes, view photographs and archival materials, and read stories about the island cable hubs.
Vols. for 1970-79 include an annual special issue called IEE reviews.
Vols. for 1887-1946 include the preprint pages of the institute's Transactions.
The demand for high-performance submarine power cables is increasing as more and more offshore wind parks are installed, and the national electric grids are interconnected. Submarine power cables are installed for the highest voltages and power to transport electric energy under the sea between islands, countries and even continents. The installation and operation of submarine power cables is much different from land cables. Still, in most textbooks on electrical power systems, information on submarine cables is scarce. This book is closing the gap. Different species of submarine power cables and their application are explained. Students and electric engineers learn on the electric and mechanic properties of submarine cables. Project developers and utility managers will gain useful information on the necessary marine activities such as pre-laying survey, cable lay vessels, guard boats etc., for the submarine cable installation and repair. Investors and decision makers will find an overview on environmental aspects of submarine power cables. A comprehensive reference list is given for those who want further reading.
Includes preprints of: Transactions of the American Institute of Electrical Engineers, ISSN 0096-3860.