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[journal article]

dc.contributor.authorKeiner, Dominikde
dc.contributor.authorBreyer, Christiande
dc.contributor.authorSterner, Michaelde
dc.date.accessioned2021-08-11T09:07:35Z
dc.date.available2021-08-11T09:07:35Z
dc.date.issued2019de
dc.identifier.issn2246-2929de
dc.identifier.urihttps://www.ssoar.info/ssoar/handle/document/74316
dc.description.abstractCoupling energy sectors within the emerging residential PV prosumer systems is necessary for an optimised use of the houseowners’ own produced electricity. But the pure availability of different energy technologies in the system is not enough. By optimising the electricity usage as well as the capacities of PV generators, storage technologies, heat pumps and battery electric vehicles, not only the best solution in a technical point of view can be achieved, the need of finding the most financially beneficial system composition for single-family houses and tenements is possible. The study provides a detailed model for average German single-family houses and tenements and results for the energy transition period until 2050 for the optimised energy systems regarding optimised PV and stationary battery capacities and different heat storage capacities. Most noticeable outcomes can be observed by using a vehicle-to-home car, where a car can mostly take over the tasks of a stationary battery and by introducing a solidarity model using this type of car in tenement systems.de
dc.languageende
dc.subject.ddcPolitikwissenschaftde
dc.subject.ddcPolitical scienceen
dc.subject.otherprosumers; sector coupling; electric vehicle; energy cost; vehicle-to-homede
dc.titleCoupling heat and electricity storage technologies for cost and self-consumption optimised residential PV prosumer systems in Germanyde
dc.description.reviewbegutachtet (peer reviewed)de
dc.description.reviewpeer revieweden
dc.source.journalInternational Journal of Sustainable Energy Planning and Management
dc.source.volume21de
dc.publisher.countryMISCde
dc.subject.classozSpecial areas of Departmental Policyen
dc.subject.classozspezielle Ressortpolitikde
dc.subject.thesozBundesrepublik Deutschlandde
dc.subject.thesozmicrocensusen
dc.subject.thesozMikrozensusde
dc.subject.thesozEnergieverbrauchde
dc.subject.thesozproduceren
dc.subject.thesozEnergieerzeugungde
dc.subject.thesozFederal Republic of Germanyen
dc.subject.thesozenergy technologyen
dc.subject.thesozenergy productionen
dc.subject.thesozVerbraucherde
dc.subject.thesozenergy consumptionen
dc.subject.thesozconsumeren
dc.subject.thesozProduzentde
dc.subject.thesozEnergietechnikde
dc.identifier.urnurn:nbn:de:0168-ssoar-74316-8
dc.rights.licenceCreative Commons - Namensnennung, Nicht kommerz., Keine Bearbeitung 3.0de
dc.rights.licenceCreative Commons - Attribution-Noncommercial-No Derivative Works 3.0en
ssoar.contributor.institutionFDBde
internal.statusformal und inhaltlich fertig erschlossende
internal.identifier.thesoz10037571
internal.identifier.thesoz10048454
internal.identifier.thesoz10052284
internal.identifier.thesoz10042072
internal.identifier.thesoz10042059
internal.identifier.thesoz10041843
internal.identifier.thesoz10055384
dc.type.stockarticlede
dc.type.documentjournal articleen
dc.type.documentZeitschriftenartikelde
dc.source.pageinfo35-58de
internal.identifier.classoz10508
internal.identifier.document32
internal.identifier.ddc320
dc.identifier.doihttps://doi.org/10.5278/ijsepm.2019.21.4de
dc.description.pubstatusPublished Versionen
dc.description.pubstatusVeröffentlichungsversionde
internal.identifier.licence19
internal.identifier.pubstatus1
internal.identifier.review1
internal.pdf.wellformedtrue
internal.pdf.encryptedfalse


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