SIEM: Santiago’ (Chile) Integrated Energy Model

Abstract: This paper presents a framework for the "Santiago Integrated Energy Model" or SIEM. This model establishes an optimized energy balance between the photovoltaic generation potential and the electric consumption curves of a specific Urban Energy District (EUD), designed for the cit...

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Autores principales: Carbonnel-Torralbo,Alexandre, Martin-Quijada,Rodrigo
Lenguaje:English
Publicado: Escuela de Construcción Civil, Pontificia Universidad Católica de Chile 2018
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Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-915X2018000300412
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spelling oai:scielo:S0718-915X20180003004122019-03-28SIEM: Santiago’ (Chile) Integrated Energy ModelCarbonnel-Torralbo,AlexandreMartin-Quijada,Rodrigo Energy balance model photovoltaic potential district energy urban energy Abstract: This paper presents a framework for the "Santiago Integrated Energy Model" or SIEM. This model establishes an optimized energy balance between the photovoltaic generation potential and the electric consumption curves of a specific Urban Energy District (EUD), designed for the city of Santiago. To validate local data, a methodology has been developed in three stages: the potential prospection and the curves estimation; the data calibration; and the EUD identification. The model has been applied in an hypothetical urban area to develop a consistency test, obtaining adequate results on the balance curves of the model, considering both the potential generation and consumption (according to uses and schedules). The results reflect the relevance of applying this model to a real urban area in Santiago of Chile, to establish optimization correlations for an empirical validation.info:eu-repo/semantics/openAccessEscuela de Construcción Civil, Pontificia Universidad Católica de ChileRevista de la construcción v.17 n.3 20182018-12-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-915X2018000300412en10.7764/rdlc.17.3.412
institution Scielo Chile
collection Scielo Chile
language English
topic Energy balance model
photovoltaic potential
district energy
urban energy
spellingShingle Energy balance model
photovoltaic potential
district energy
urban energy
Carbonnel-Torralbo,Alexandre
Martin-Quijada,Rodrigo
SIEM: Santiago’ (Chile) Integrated Energy Model
description Abstract: This paper presents a framework for the "Santiago Integrated Energy Model" or SIEM. This model establishes an optimized energy balance between the photovoltaic generation potential and the electric consumption curves of a specific Urban Energy District (EUD), designed for the city of Santiago. To validate local data, a methodology has been developed in three stages: the potential prospection and the curves estimation; the data calibration; and the EUD identification. The model has been applied in an hypothetical urban area to develop a consistency test, obtaining adequate results on the balance curves of the model, considering both the potential generation and consumption (according to uses and schedules). The results reflect the relevance of applying this model to a real urban area in Santiago of Chile, to establish optimization correlations for an empirical validation.
author Carbonnel-Torralbo,Alexandre
Martin-Quijada,Rodrigo
author_facet Carbonnel-Torralbo,Alexandre
Martin-Quijada,Rodrigo
author_sort Carbonnel-Torralbo,Alexandre
title SIEM: Santiago’ (Chile) Integrated Energy Model
title_short SIEM: Santiago’ (Chile) Integrated Energy Model
title_full SIEM: Santiago’ (Chile) Integrated Energy Model
title_fullStr SIEM: Santiago’ (Chile) Integrated Energy Model
title_full_unstemmed SIEM: Santiago’ (Chile) Integrated Energy Model
title_sort siem: santiago’ (chile) integrated energy model
publisher Escuela de Construcción Civil, Pontificia Universidad Católica de Chile
publishDate 2018
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-915X2018000300412
work_keys_str_mv AT carbonneltorralboalexandre siemsantiago8217chileintegratedenergymodel
AT martinquijadarodrigo siemsantiago8217chileintegratedenergymodel
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