Camisea gas savings by use of a combined cycle gas power and steam power generation

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A combined cycle is characteristic of a power producing engine or plant that employs more than one thermodynamic cycle. Heat engines are only able to use a portion of the energy their fuel generates (usually less than 30%). The remaining heat from combustion is generally wasted. Combining two or mor...

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Detalles Bibliográficos
Autores: Salas Colotta, Gilberto, Porlles Loarte, José, Quispe Atuncar, Carlos
Formato: artículo
Fecha de Publicación:2010
Institución:Universidad Nacional Mayor de San Marcos
Repositorio:Revistas - Universidad Nacional Mayor de San Marcos
Lenguaje:español
OAI Identifier:oai:ojs.csi.unmsm:article/6197
Enlace del recurso:https://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/6197
Nivel de acceso:acceso abierto
Materia:Combined gas and stean turbine
thermodynamic cycle combined.
Ciclo combinado turbina a gas y vapor
ciclo termodinámico combinado
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spelling Camisea gas savings by use of a combined cycle gas power and steam power generationAhorro del gas de Camisea por uso de un ciclo de potencia combinado de gas y vapor en la generación eléctricaSalas Colotta, GilbertoPorlles Loarte, JoséQuispe Atuncar, CarlosCombined gas and stean turbinethermodynamic cycle combined.Ciclo combinado turbina a gas y vaporciclo termodinámico combinadoA combined cycle is characteristic of a power producing engine or plant that employs more than one thermodynamic cycle. Heat engines are only able to use a portion of the energy their fuel generates (usually less than 30%). The remaining heat from combustion is generally wasted. Combining two or more “cycles” such as the Brayton cycle and Rankine cycle results in improved overall effi ciency. In a combined cycle power plant (CCPP), or combined cycle gas turbine (CCGT) plant, a gas turbine generator generates electricity and the waste heat is used to make steam to generate additional electricity via a steam turbine; this last step enhances the effi ciency of electricity generation.Las centrales térmicas instaladas alimentadas a gas natural actualmente son de ciclo simple con una efi - ciencia que no sobrepasa el 30%. Para sacar el mayor provecho del gas de Camisea para la producción de energía eléctrica, se dispuso a través del Decreto legislativo 1041 que las actuales plantas térmicas a gas deberán mejorar su equipamiento para producir más electricidad usando la misma cantidad de combustible. Este decreto busca impulsar las inversiones en el sector eléctrico y dispone que el valor inicial de la efi ciencia térmica reconocido, será de 30% durante los 36 primeros meses de entrada en vigencia de esta norma, y que después deberá incrementarse a 50%. El trabajo consiste en determinar el aumento de la efi ciencia térmica por modifi cación de las centrales actuales, a ciclo combinado gas-vapor, con el consiguiente ahorro de gas naturalFacultad de Ingeniería Industrial, Universidad Nacional Mayor de San Marcos2010-12-31info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/619710.15381/idata.v13i2.6197Industrial Data; Vol. 13 No. 2 (2010); 092-098Industrial Data; Vol. 13 Núm. 2 (2010); 092-0981810-99931560-9146reponame:Revistas - Universidad Nacional Mayor de San Marcosinstname:Universidad Nacional Mayor de San Marcosinstacron:UNMSMspahttps://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/6197/5398Derechos de autor 2010 Gilberto Salas Colotta, José Porlles Loarte, Carlos Quispe Atuncarhttps://creativecommons.org/licenses/by-nc-sa/4.0info:eu-repo/semantics/openAccessoai:ojs.csi.unmsm:article/61972021-07-14T10:16:10Z
dc.title.none.fl_str_mv Camisea gas savings by use of a combined cycle gas power and steam power generation
Ahorro del gas de Camisea por uso de un ciclo de potencia combinado de gas y vapor en la generación eléctrica
title Camisea gas savings by use of a combined cycle gas power and steam power generation
spellingShingle Camisea gas savings by use of a combined cycle gas power and steam power generation
Salas Colotta, Gilberto
Combined gas and stean turbine
thermodynamic cycle combined.
Ciclo combinado turbina a gas y vapor
ciclo termodinámico combinado
title_short Camisea gas savings by use of a combined cycle gas power and steam power generation
title_full Camisea gas savings by use of a combined cycle gas power and steam power generation
title_fullStr Camisea gas savings by use of a combined cycle gas power and steam power generation
title_full_unstemmed Camisea gas savings by use of a combined cycle gas power and steam power generation
title_sort Camisea gas savings by use of a combined cycle gas power and steam power generation
dc.creator.none.fl_str_mv Salas Colotta, Gilberto
Porlles Loarte, José
Quispe Atuncar, Carlos
author Salas Colotta, Gilberto
author_facet Salas Colotta, Gilberto
Porlles Loarte, José
Quispe Atuncar, Carlos
author_role author
author2 Porlles Loarte, José
Quispe Atuncar, Carlos
author2_role author
author
dc.subject.none.fl_str_mv Combined gas and stean turbine
thermodynamic cycle combined.
Ciclo combinado turbina a gas y vapor
ciclo termodinámico combinado
topic Combined gas and stean turbine
thermodynamic cycle combined.
Ciclo combinado turbina a gas y vapor
ciclo termodinámico combinado
description A combined cycle is characteristic of a power producing engine or plant that employs more than one thermodynamic cycle. Heat engines are only able to use a portion of the energy their fuel generates (usually less than 30%). The remaining heat from combustion is generally wasted. Combining two or more “cycles” such as the Brayton cycle and Rankine cycle results in improved overall effi ciency. In a combined cycle power plant (CCPP), or combined cycle gas turbine (CCGT) plant, a gas turbine generator generates electricity and the waste heat is used to make steam to generate additional electricity via a steam turbine; this last step enhances the effi ciency of electricity generation.
publishDate 2010
dc.date.none.fl_str_mv 2010-12-31
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/6197
10.15381/idata.v13i2.6197
url https://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/6197
identifier_str_mv 10.15381/idata.v13i2.6197
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/idata/article/view/6197/5398
dc.rights.none.fl_str_mv Derechos de autor 2010 Gilberto Salas Colotta, José Porlles Loarte, Carlos Quispe Atuncar
https://creativecommons.org/licenses/by-nc-sa/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Derechos de autor 2010 Gilberto Salas Colotta, José Porlles Loarte, Carlos Quispe Atuncar
https://creativecommons.org/licenses/by-nc-sa/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Facultad de Ingeniería Industrial, Universidad Nacional Mayor de San Marcos
publisher.none.fl_str_mv Facultad de Ingeniería Industrial, Universidad Nacional Mayor de San Marcos
dc.source.none.fl_str_mv Industrial Data; Vol. 13 No. 2 (2010); 092-098
Industrial Data; Vol. 13 Núm. 2 (2010); 092-098
1810-9993
1560-9146
reponame:Revistas - Universidad Nacional Mayor de San Marcos
instname:Universidad Nacional Mayor de San Marcos
instacron:UNMSM
instname_str Universidad Nacional Mayor de San Marcos
instacron_str UNMSM
institution UNMSM
reponame_str Revistas - Universidad Nacional Mayor de San Marcos
collection Revistas - Universidad Nacional Mayor de San Marcos
repository.name.fl_str_mv
repository.mail.fl_str_mv
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score 13.949927
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