Rodyti trumpą aprašą

dc.contributor.authorJanuševičius, Karolis
dc.contributor.authorBielskus, Juozas
dc.contributor.authorMartinaitis, Vytautas
dc.contributor.authorStreckienė, Giedrė
dc.contributor.authorRimdžius, Dovydas
dc.date.accessioned2023-09-18T17:01:19Z
dc.date.available2023-09-18T17:01:19Z
dc.date.issued2017
dc.identifier.urihttps://etalpykla.vilniustech.lt/handle/123456789/119020
dc.description.abstractIn order to reduce impact to environment, a qualitative approach of energy saving is global aspect that is included in various forms of CO2 emissions, primary energy limitations and benchmarks in EU and member countries policy. Exergy analysis allows expressing the quality of energy flows in comparison to ambient or other reference conditions. Despite of this valuable information, this concept is not widely used in engineering practice. The article suggests the calculation procedure for sessional or periodical thermodynamic (exergy) efficiency in relation to variable reference conditions. Knowledge about defined procedures unlocks the possibility to fill up the implementation gap for building system engineering practice where seasonal performance parameters are widely used to express efficiency. Prepared algorithm allows determining seasonal or periodic thermodynamic efficiency of individual elements and energy transfer chains in building energy systems. Defined calculation procedure workflow is suitable for integrated approach when coupled heat transfer and fluid flow processes are explored in short time steps with dynamic simulation software tools. Presented algorithm ensures result that fits in thermodynamically correct range 0-1 and helps to summarize separate time step results. By adding duration of specific conditions, this analysis enables to identify critical peak periods and base load conditions across operation period. The presented framework fills the gap in lack of systematic expression for seasonal thermodynamic efficiency and suggests the process for calculation procedures workflow.eng
dc.formatPDF
dc.format.extentp. 1-9
dc.format.mediumtekstas / txt
dc.language.isoeng
dc.relation.isreferencedbyConference Proceedings Citation Index - Science (Web of Science)
dc.relation.isreferencedbyScopus
dc.source.urihttps://doi.org/10.3846/enviro.2017.271
dc.source.urihttp://enviro.vgtu.lt/index.php/enviro/2017/paper/viewFile/221/395
dc.subjectAE02 - Efektyvios išteklių ir energijos naudojimo sistemos bei technologijos / Efficient use of resources, energy systems and technologies
dc.titleExpressing the building energy systems thermodynamic seasonal efficiency
dc.typeStraipsnis konferencijos darbų leidinyje Web of Science DB / Paper in conference publication in Web of Science DB
dcterms.accessRightsThis is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY-NC 4.0) License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
dcterms.references22
dc.type.pubtypeP1a - Straipsnis konferencijos darbų leidinyje Web of Science DB / Article in conference proceedings Web of Science DB
dc.contributor.institutionVilniaus Gedimino technikos universitetas
dc.contributor.facultyAplinkos inžinerijos fakultetas / Faculty of Environmental Engineering
dc.subject.researchfieldT 006 - Energetika ir termoinžinerija / Energy and thermoengineering
dc.subject.researchfieldT 009 - Mechanikos inžinerija / Mechanical enginering
dc.subject.researchfieldT 002 - Statybos inžinerija / Construction and engineering
dc.subject.ltspecializationsL102 - Energetika ir tvari aplinka / Energy and a sustainable environment
dc.subject.enExergy efficiency
dc.subject.enSeasonal efficiency
dc.subject.enPeriodic efficiency
dc.subject.enBuilding energy system
dcterms.sourcetitle10th international conference "Environmental engineering", April 27-28, 2017, Vilnius, Lithuania : selected papers
dc.publisher.nameVGTU Press
dc.publisher.cityVilnius
dc.identifier.doi2-s2.0-85061837233
dc.identifier.doi000495878500078
dc.identifier.doi10.3846/enviro.2017.271
dc.identifier.elaba24530520


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