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Techno-Economic Analysis of Battery Electricity Storage Towards Self-Sufficient Buildings.
These data represent the energy demand of a building designed following the “Directive of the European Parliament on the energy performance of building” (2010/31/EU ) and that meets the “Casaclima” energy certificate. It belongs to the CasaClima A energy class (Class A for what concerns the envelope efficiency, Gold Class for what concerns the overall energy efficiency). Hourly electrical and thermal consumption are presented for a year for 5 different climatic conditions according to the IEA classification. Consumption has been modeled through Energy Plus and validated against measured data. Please refer to https://doi.org/10.1016/j.enconman.2022.115313 for the methodology description. Pleas acknowledge https://doi.org/10.1016/j.enconman.2022.115313 when using the data set. ; The present research work has been supported by the Italian Ministry of Education, Universities and Research, MIUR, as Project of National Interest, PRIN 2017F4S2L3 and by the project "Efficienza energetica negli edifici: un approccio integrato verso l'edificio a zero emissioni" founded by Regione Lazio, POR-FESR 2014-2020, call "interventi per il rafforza mento della ricerca nel Lazio incentivi per i dottorati di innovazione per le imprese Asse 3 - Istruzione e formazione Priorità di investimento 10 ii) Obiettiv specifico 10.5 Azione Cardine 21. The Authors would also like to Acknowledge Saggini Costruzioni for the fruitful collaboration and for the data provided to this research.
Techno-Economic Analysis of Battery Electricity Storage Towards Self-Sufficient Buildings.
These data represent the energy demand of a building designed following the “Directive of the European Parliament on the energy performance of building” (2010/31/EU ) and that meets the “Casaclima” energy certificate. It belongs to the CasaClima A energy class (Class A for what concerns the envelope efficiency, Gold Class for what concerns the overall energy efficiency). Hourly electrical and thermal consumption are presented for a year for 5 different climatic conditions according to the IEA classification. Consumption has been modeled through Energy Plus and validated against measured data. Please refer to https://doi.org/10.1016/j.enconman.2022.115313 for the methodology description. Pleas acknowledge https://doi.org/10.1016/j.enconman.2022.115313 when using the data set. ; The present research work has been supported by the Italian Ministry of Education, Universities and Research, MIUR, as Project of National Interest, PRIN 2017F4S2L3 and by the project "Efficienza energetica negli edifici: un approccio integrato verso l'edificio a zero emissioni" founded by Regione Lazio, POR-FESR 2014-2020, call "interventi per il rafforza mento della ricerca nel Lazio incentivi per i dottorati di innovazione per le imprese Asse 3 - Istruzione e formazione Priorità di investimento 10 ii) Obiettiv specifico 10.5 Azione Cardine 21. The Authors would also like to Acknowledge Saggini Costruzioni for the fruitful collaboration and for the data provided to this research.
Techno-Economic Analysis of Battery Electricity Storage Towards Self-Sufficient Buildings.
Rosati, Alessandro (author) / Facci, Andrea Luigi (author) / Ubertini, Stefano (author)
2022-01-04
Research Data
Electronic Resource
English
DDC:
690
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