EHV AC Undergrounding Electrical Power [recurso electrónico] : Performance and Planning / by Roberto Benato, Antonio Paolucci.

Por: Benato, Roberto [author.]Colaborador(es): Paolucci, Antonio [author.] | SpringerLink (Online service)Tipo de material: TextoTextoSeries Power SystemsEditor: London : Springer London, 2010Descripción: XIV, 175p. 153 illus. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9781848828674Tema(s): Engineering | Civil engineering | Production of electric energy or power | Engineering | Power Electronics, Electrical Machines and Networks | Civil EngineeringFormatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD: 621.317 Clasificación LoC:TK7881.15Recursos en línea: Libro electrónicoTexto
Contenidos:
HV Cable World Statistics and some Large Installations -- The Positive Sequence Model of Symmetrical Lines -- Operating Capability of Long AC EHV Power Cables -- Operating Capability of AC EHV Mixed Lines with Overhead and Cables Links -- Multiconductor Analysis of UGC -- A Comparative Procedure for AC OHL and UGC Overall Cost.
En: Springer eBooksResumen: The selection and performance of insulated cables in electrical grids is a vital part of electric power transmission, but is often neglected in favour of a focus on technological construction. EHV AC Undergrounding Electrical Power discusses new methods of analysis for cable performance and for the network behaviour of cable, mixed and overhead lines. It uses capability charts throughout, to offer the reader a clear visual representation of transmission line performances. The authors discuss the technically computed undergrounding of electrical power and develop original procedures based on the classical equations of transmission lines. They also provide technical and economical comparisons of a variety of cables and analysis methods, in order to examine the performance of AC power transmission systems. A range of important topics are covered, including: • energization and de-energization phenomena of transmission lines; • power quality; and • cable safety constraints. EHV AC Undergrounding Electrical Power is an original guide on cable insertion planning and the operation of power networks. It will enable readers to make detailed performance comparisons between power transmission systems, which will be valuable for postgraduates, as well as engineers involved in power cable manufacturing or electrical transmission systems.
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Colección de Libros Electrónicos TK7881.15 (Browse shelf(Abre debajo)) 1 No para préstamo 372769-2001

HV Cable World Statistics and some Large Installations -- The Positive Sequence Model of Symmetrical Lines -- Operating Capability of Long AC EHV Power Cables -- Operating Capability of AC EHV Mixed Lines with Overhead and Cables Links -- Multiconductor Analysis of UGC -- A Comparative Procedure for AC OHL and UGC Overall Cost.

The selection and performance of insulated cables in electrical grids is a vital part of electric power transmission, but is often neglected in favour of a focus on technological construction. EHV AC Undergrounding Electrical Power discusses new methods of analysis for cable performance and for the network behaviour of cable, mixed and overhead lines. It uses capability charts throughout, to offer the reader a clear visual representation of transmission line performances. The authors discuss the technically computed undergrounding of electrical power and develop original procedures based on the classical equations of transmission lines. They also provide technical and economical comparisons of a variety of cables and analysis methods, in order to examine the performance of AC power transmission systems. A range of important topics are covered, including: • energization and de-energization phenomena of transmission lines; • power quality; and • cable safety constraints. EHV AC Undergrounding Electrical Power is an original guide on cable insertion planning and the operation of power networks. It will enable readers to make detailed performance comparisons between power transmission systems, which will be valuable for postgraduates, as well as engineers involved in power cable manufacturing or electrical transmission systems.

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