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dc.contributor.authorThalfeldt, Martin*
dc.contributor.authorFerrantelli, Andrea*
dc.contributor.authorKurnitski, Jarek*
dc.date.accessioned2021-02-11T12:32:45Z
dc.date.available2021-02-11T12:32:45Z
dc.date.issued2019*
dc.date.submitted2019-12-09 11:49:16*
dc.identifier42665*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/46384
dc.description.abstractHVAC systems, load shifting, indoor climate, and energy and ventilation performance analyses are the key topics when improving energy performance in new and renovated buildings. This development has been boosted by the recently established nearly zero energy building requirements that will soon be in use in all EU Member States, as well as similar long-term zero energy building targets in Japan, the US, and other countries. The research covered in this Special Issue provides evidence of how new technical solutions have worked, in practice, in new or renovated buildings, and also discusses problems and how solutions should be further developed. Another focus is on the more detailed calculation methods needed for the correct design and sizing of dedicated systems, and for accurate quantification of energy savings. Occupant behavior and building operation is also examined, in order to avoid common performance gaps between calculated and measured performance. These topics demonstrate the challenge of high performance buildings as, in the end, comfortable buildings with good indoor climate which are easy and cheap to operate and maintain are expected by end customers. Ventilation performance, heating and cooling, sizing, energy predictions and optimization, load shifting, and field studies are some of the key topics in this Special Issue, contributing to the future of high performance buildings with reliable operation.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.otherindoor air quality*
dc.subject.otherstratification*
dc.subject.otherchiller plants*
dc.subject.otheralternate operation*
dc.subject.otherdisplacement ventilation*
dc.subject.otherdraught rate*
dc.subject.otherbuilding*
dc.subject.otherindoor temperature after renovation*
dc.subject.otherDHW heating*
dc.subject.otherdaylight factor*
dc.subject.otherenergy*
dc.subject.otherenergy performance modeling*
dc.subject.otherhybrid displacement device*
dc.subject.otherbuilding energy modelling*
dc.subject.otherenergy performance of buildings directive*
dc.subject.othercondenser evaporative precooling*
dc.subject.otherDHW energy use*
dc.subject.otherheating mode*
dc.subject.otherground source heat pump*
dc.subject.otherpersonalized ventilation*
dc.subject.otherdaylight*
dc.subject.otherexisting buildings*
dc.subject.otheroptimal energy management*
dc.subject.othercooling*
dc.subject.othermixing ventilation*
dc.subject.otherdaylight survey*
dc.subject.otheruser behavior*
dc.subject.otherlocal air change effectiveness*
dc.subject.otherbasketball hall*
dc.subject.otherCFD*
dc.subject.othersizing*
dc.subject.otherelectricity use*
dc.subject.othercontrol strategy*
dc.subject.otherHVAC systems*
dc.subject.otherventilation*
dc.subject.otheroccupant behavior*
dc.subject.othersmart readiness indicator*
dc.subject.otherenergy signature*
dc.subject.otherstandard use*
dc.subject.otherbuilding energy simulation*
dc.subject.otheroutdoor air*
dc.subject.othermonitoring measurements*
dc.subject.otherCOP*
dc.subject.otherqualitative control*
dc.subject.otherwind pressure*
dc.subject.otherdecentralized ventilation unit*
dc.subject.otherfield measurement*
dc.subject.otherthermal comfort*
dc.subject.otherstudent dormitories*
dc.subject.otherdata-driven analysis*
dc.subject.otherenergy performance*
dc.subject.otherdaylight simulations*
dc.subject.otherair jet*
dc.subject.otherISO 52016-1*
dc.subject.othermultiple sensor nodes*
dc.subject.otherdowndraught*
dc.subject.otherenergy efficiency*
dc.subject.otherbuilding pressure condition*
dc.subject.othermeteorological reanalysis data*
dc.subject.otherISO 7730*
dc.subject.otherthermal analysis*
dc.subject.otherMonte Carlo method*
dc.subject.othercorner impinging jet*
dc.subject.othergreenhouse*
dc.subject.otherPro-GET-onE H2020*
dc.subject.otherin situ measurements*
dc.subject.othersmart buildings*
dc.subject.otherskin temperature*
dc.subject.otherretirement home*
dc.subject.otherdemand side management*
dc.subject.otherindoor climate*
dc.subject.otheruser input data*
dc.subject.otherIndoor Environmental Quality (IEQ)*
dc.subject.otherventilation renovation*
dc.subject.othertracer gas*
dc.subject.othergray box*
dc.subject.otherJaya algorithm*
dc.subject.othersingle room ventilation unit*
dc.subject.othersatellite-based solar radiation data*
dc.subject.otherchiller performance*
dc.subject.otherrooftop air conditioners*
dc.subject.othersmart grid*
dc.subject.otherTRNSYS*
dc.subject.otherstack effect*
dc.subject.otherspace heating*
dc.subject.otherenergy flexibility*
dc.subject.othercorner mixing ventilation*
dc.subject.otherload shifting*
dc.subject.otherheating power*
dc.subject.otherair exchange effectiveness*
dc.subject.otherindoor temperature uniformity*
dc.subject.otherdemand response*
dc.titleEnergy Performance and Indoor Climate Analysis in Buildings*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-380-1*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039213801*
oapen.relation.isbn9783039213795*
oapen.pages374*
oapen.edition1st*


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