Search results for "Zero energy buildings"

showing 10 items of 17 documents

Modeling and design of Net ZEBs as integrated energy systems

2015

Net-zero energy buildings (Net ZEBs) are emerging as a quantifiable design concept and a promising solution to minimizing the environmental impact of buildings. This is the main concept that is focused on this chapter with emphasis on dynamic modeling and examples of technological approaches to achieve net-zero energy. Appropriate modeling of building-integrated solar energy systems is essential for the design of Net ZEBs and the study of optimal control strategies. The net-zero energy balance may be achieved through a combination of passive and active solar technologies, heat pumps, combined heat and power, and energy efficiency measures to reduce energy consumption for lighting and applia…

Computer scienceModelingSystems engineeringNet (polyhedron)Modeling and designdesign Net Zero energy buildings energy systemsCivil engineeringEnergy (signal processing)System dynamicsEfficient energy use
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Energy measurements at Skarpnes zero energy homes in Southern Norway: Do the loads match up with the on-site energy production?

2017

Five houses are designed as zero-energy homes in Skarpnes, Norway. The energy goal is to achieve net zero-energy balance on an annual basis. The houses have heat pumps and solar cells (PV). Energy use and delivered energy have been monitored from June 2015. Variations between calculations and measurements are explained by technical and non-technical reasons. For the first year, higher than expected energy loads result in a solar energy cover factor of 65–87% of delivered electricity. The PV generation performs satisfactorily, hence, it may be possible to achieve energy goals during later years provided technical adjustments or behavioral changes. Acknowledgements. This report has been writt…

EngineeringArchitectural engineering020209 energyZero emission building; ZEB02 engineering and technologyZero energy buildings:Teknologi: 500 [VDP]Energimålinger0202 electrical engineering electronic engineering information engineeringProduction (economics)Energy measurementsZero emissionPhotovolatic systemZero-energy buildingNorwaybusiness.industry:Technology: 500 [VDP]VDP::Technology: 500Fotovoltaisk systemBuilding energy simulationsVDP::Teknologi: 500Null energibyggResearch centreResearch councilBygninger energisimuleringerElectricitybusinessZero energy homesEnergy Procedia
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Redesign of a Rural Building in a Heritage Site in Italy: Towards the Net Zero Energy Target

2017

In order to achieve the ambitious objective of decarbonising the economy, it is mandatory, especially in Europe and in Italy, to include the retrofitting of existing buildings. In a country where a large share of existing buildings have heritage value, it is important to design effective retrofit solutions also in historical buildings. In this context, the paper describes the experience of re-design of an existing rural building located in Sicily, inside the ancient Greeks' “Valley of the Temples”. An energy audit was performed on the building, and its energy uses were thoroughly investigated. A building model was developed in the TRNSYS environment and its performances validated. The valid…

EngineeringArchitectural engineeringBuilding scienceNet Zero Energy Buildings020209 energyBuilding modelContext (language use)Historical building02 engineering and technologyTRNSYSbuilding simulationEnergy engineeringlcsh:TH1-9745Architecture0202 electrical engineering electronic engineering information engineeringCivil and Structural EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingbusiness.industryhistorical buildingsNatural ventilationBuilding and Constructionhistorical buildings; building simulation; Net Zero Energy Buildingsbusinesslcsh:Building constructionEfficient energy useBuildings
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Life cycle energy performances of a Net Zero Energy prefabricated building in Sicily

2017

The paper presents the energy performances in a life cycle perspective of a prefabricated building. The building was simulated in energy plus and validated on monitored data. To avoid the shifting of energy burdens from one life cycle stage to others, a Life Cycle Energy Assessment was performed. The primary energy use throughout the building's life cycle is 1,242 GJ. The materials production stage consumes the highest amount of primary energy (680 GJ) followed by the use stage (484 GJ), while the construction and end-of-life require respectively 1.7 % and the 4.6 % of total primary energy. (C) 2017 The Authors. Published by Elsevier Ltd. Peer-review under responsibility of the scientific c…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingPrimary energyNet Zero Energy Buildingsbusiness.industry020209 energyEnvironmental engineering02 engineering and technology010501 environmental sciences01 natural sciencesEnergy assessmentModular BuildingsEnergy life-cycle approach0202 electrical engineering electronic engineering information engineeringNet Zero Energy BuildingbusinessCartographyEmbodied energyEmbodied energyEnergy (signal processing)0105 earth and related environmental sciences
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Towards Nearly Zero Energy and Environmentally Sustainable Agritourisms: The Effectiveness of the Application of the European Ecolabel Brand

2020

Tourism represents an important economic driver in Italy, being responsible for approximately 13.2% of the total GDP (a value higher than the reference European average) and for nearly 10% of the regional GDP. Among the touristic sectors, the agritourist ones show a persistent growth, experiencing in 2019 a 6.7 point percentage improvement compared to the 2017 figures. Given this situation, the transition towards a low-carbon path, affecting the building sector for some time, should also involve agritourist buildings, through the release of EU directives, member state laws, and technical rules. On the other hand, agritourism sites could be awarded the Community EU Ecolabel. Unfortunately, a…

European environmental brands0211 other engineering and technologies02 engineering and technologyEuropean environmental brand010501 environmental scienceslcsh:Technology01 natural scienceslcsh:Chemistrybuilding energy eciencyDocumentationMember stateGeneral Materials Science021108 energylcsh:QH301-705.5InstrumentationStock (geology)0105 earth and related environmental sciencesFluid Flow and Transfer ProcessesConsumption (economics)building energy efficiencySettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildinglcsh:TProcess Chemistry and TechnologyagritourismGeneral EngineeringEnvironmental economicstourism sectorlcsh:QC1-999Computer Science Applicationslcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040nearly zero energy buildings (nZEB)BusinessEcolabellcsh:Engineering (General). Civil engineering (General)lcsh:PhysicsTourismEfficient energy useApplied Sciences
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Load match optimisation of a residential building case study: A cross-entropy based electricity storage sizing algorithm

2015

Abstract The EU EPBD recast regulation marked the application of the net zero energy building (Net ZEB) concept in all fields of building construction in Europe as a building able to generate as much energy as it consumes over a selected time frame. A more detailed insight is however needed, as even if a building achieves a long-term energy balance between energy generated and consumed, smaller time scales must also be considered. For example, from the utility’s point of view, if a Net ZEB is a heavy consumer in the winter, it will appear to be quite similar to a conventional building, requiring the use of additional generation. The increase in the generation-load match means reducing the s…

Mathematical optimizationEngineeringZero-energy buildingEnergy storageSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryMechanical EngineeringNet zero energy buildingEnergy balanceBuilding and ConstructionEnergy consumptionManagement Monitoring Policy and LawNet zero energy buildingsLoad matchEnergy accountingEnergy storageGeneral EnergyElectricity generationGrid energy storageElectricityCross entropy methodbusinessSimulation
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Life cycle assessment of solar communities

2020

Abstract This study presents the comparison of the life cycle performance of two different urban energy systems, applied to a large mixed-use community, in Calgary (Canada). The two systems investigated consist of an energy efficient conventional system, using heat pumps for heating, cooling and domestic hot water; the second design widely deploys solar thermal panels coupled to district heating infrastructure and a borehole seasonal thermal storage. The analysis is based on the Life Cycle Assessment methodology and includes the stages of raw materials and energy supply, system manufacturing, use stage of the systems, generation and use of energy on-site, maintenance and components’ substit…

Mixed mode communitiesSettore ING-IND/11 - Fisica Tecnica AmbientaleILCDNet zero energy districtsRenewable Energy Sustainability and the EnvironmentImpact assessment020209 energyBorehole02 engineering and technologyNet zero energy buildings021001 nanoscience & nanotechnologyThermal energy storageCivil engineeringBuilding simulationLife cycle assessment0202 electrical engineering electronic engineering information engineeringEnvironmental sustainability of districtsEnvironmental scienceGeneral Materials ScienceStage (hydrology)Energy supply0210 nano-technologyLife-cycle assessmentEfficient energy useSolar Energy
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Leading agritourism facilities along Nearly Zero Energy paths: Proposal of an easy-to-use evaluation method

2020

The tourist sector, despite the present severe constraints imposed by the sanitary emergence, can be considered as an important component of almost all countries' economies. In Italy agriturism, in particular, has been experiences a continuously rising trend in recent years. Clearly, such great interest towards these businesses also calls for a deep attention by an energy point of view, in sight of an energy efficiency improvement, hence a lowering of the pressure that such facilities exert to the natural environment. On the other hand, the European Union has been engaged, for a long time, in awarding the tourist accommodations environmental excellence brands, like the EU Ecolabel. Unfortun…

Nearly Zero Energy BuildingsEnergy Savings Evaluation MethodTourism Buildings
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REACHING NET ZERO ENERGY: OVERCOMING CLIMATE CHALLENGES WITH A ‘SOLUTION SETS’ DESIGN APPROACH

2013

The paper proposes an innovative energy performances evaluation and design approach, developed during the II° Ph.D. IEA Task 40 Summer School. The aim of the work is to check the importance of a ‘design with climate’ approach in understanding how much climate conditions can influence the design choices. The idea is to focus on the technical and architectural solutions that have the highest impact on the overall energy performances of the building in its original climate, then to move it to a completely different location, re-evaluating the energy performances of the building, in connection to the new site challenges. The last step is a re-design study in order to achieve the best performanc…

Net Zero Energy Buildings Bioclimatic approach design with climate energy Plus
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Net Zeb case studies. Leaf House

2015

In this book, accomplished international experts present advanced modeling techniques as well as in-depth case studies meant to lead designers towards the optimal use of simulation tools for the design of net-zero energy buildings (Net ZEBs). The book discusses different design processes and tools used in designing Net ZEBs, starting from the fundamental concepts, design strategies, and technologies. These processes and tools are then evaluated by referring to four diverse Net ZEBs where the authors were intimately involved from the design concept to operation. The high resolution measured performance data from these case studies are compared with the predictions made using the respective d…

Net Zero Energy buildings Building simulation case study TRNSYS
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