Search results for "Architectural engineering"

showing 10 items of 158 documents

The BAC factor method: Application to a real Italian not-residential building

2016

The paper focuses the evaluation of the impact of Building Automation Control (BAC) systems on not-residential buildings. In particular, this work shows how the control, monitoring and automation actions considered by the European Standard EN 15232 can influence the electric and thermal energy consumptions of the University of Palermo DEIM (Department of Energy, Information Engineering and Mathematical Models) building. After evaluating the building energy consumptions, by using the CEI Guide 205-18, the BAC systems are chosen and sized and an economic evaluation of their installation cost is also carried out.

EngineeringArchitectural engineeringBAC factorZero-energy buildingbusiness.industryRenewable Energy Sustainability and the Environment020209 energyenergy management systemEnergy Engineering and Power Technology02 engineering and technologyEnergy consumptionAutomationTransport engineeringSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaInformation engineeringWork (electrical)Economic evaluation0202 electrical engineering electronic engineering information engineeringbuildings energy efficiencyElectrical and Electronic Engineeringbusinessbuildings control actionThermal energyBuilding automation
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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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An integrated simulation method for building energy performance assessment in urban environments

2012

a b s t r a c t The microclimate around a building, establishing through the interaction with other buildings or the natural environment, is a significant factor in the building energy consumption. This paper presents a method for the quantitative analysis of building energy performance under any given urban contexts by linking the microclimate model ENVI-met to the building energy simulation (BES) program EnergyPlus. The full microclimatic factors such as solar radiation, long wave radiation, air temperature, air humidity, and wind speed have been considered in the proposed scheme. A case study has been conducted to analyze the effects of different microclimatic factors on the energy balan…

EngineeringArchitectural engineeringBuilding sciencebusiness.industryMechanical EngineeringEnergy balanceMicroclimateBuilding energyBuilding and ConstructionBuilding designCivil engineeringWind speedUrban planningElectrical and Electronic EngineeringbusinessBuilding energy simulationCivil and Structural EngineeringEnergy and Buildings
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Overview and future challenges of nearly zero energy buildings (nZEB) design in Southern Europe

2017

In times of great transition of the European construction sector to energy efficient and nearly zero energy buildings (nZEB), a market observation containing qualitative and quantitative indications should help to fill out some of the current gaps concerning the EU 2020 carbon targets. Next to the economic challenges, there are equally important factors that hinder renovating the existing residential building stock and adding newly constructed high performance buildings. Under these circumstances this paper summarises the findings of a cross-comparative study of the societal and technical barriers of nZEB implementation in 7 Southern European countries. The study analyses the present situat…

EngineeringArchitectural engineeringEPBD020209 energy02 engineering and technologyThermal comfortCivil Engineering7. Clean energy11. SustainabilityWarm climate0202 electrical engineering electronic engineering information engineeringRetrofittingElectrical and Electronic EngineeringEmpirical evidenceNearly zero energy building (nZEB)Civil and Structural EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleScience & TechnologyZero-energy buildingGreat TransitionRenovationbusiness.industryMechanical EngineeringEnvironmental resource managementBuilding and ConstructionFuel poverty13. Climate actionConstruction quality; EPBD; Fuel poverty; Nearly zero energy building (nZEB); Net zero energy building (NZEB); Renovation; Thermal comfort; Warm climate; Civil and Structural Engineering; Building and Construction; Mechanical Engineering; Electrical and Electronic EngineeringConstruction qualityEngineering and TechnologyNet zero energy building (NZEB)businessFuel povertyEfficient energy use
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DE.DU.ENER.T. project: A prototype of a sustainable energy microsystem

2016

The paper presents a prototype of a microsystem for the integration and the optimal management of renewable energy sources in order to attain a reduction of the total energy consumption of a not residential building. The system composed by the building and the prototype is an energy sustainable microsystem and is located in Italy in the city of Valderice. The microsystem has been conceived in the ENPI (European Neighborhood and Partnership Instrument) cross-border cooperation Italy - Tunisia 2007-2013 DE.DU.ENER.T. (Le DEveloppement DUrable dans la production ENERgetique dans le Territoire) research project framework. In the paper the purposes of the DE.DU.ENER.T. project are presented and …

EngineeringArchitectural engineeringEnergy EfficiencyRenewable Energy Sustainability and the Environmentbusiness.industryMicrosystemPhotovoltaic systemEnergy Engineering and Power TechnologyDemand ResponseCivil engineeringOptimal managementRenewable energySustainable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaDemand responseGeneral partnershipMicrosystemElectrical and Electronic EngineeringbusinessPhotovoltaicEfficient energy use2016 IEEE 16th International Conference on Environment and Electrical Engineering (EEEIC)
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From Silk to Digital Technologies: A Gateway to New Opportunities for Creative Industries, Traditional Crafts and Designers. The SILKNOW Case

2020

Nowadays, cultural heritage is more than ever linked to the present. It links us to our cultural past through the conscious act of preserving and bequeathing to future generations, turning society into its custodian. The appreciation of cultural heritage happens not only because of its communicative power, but also because of its economic power, through sustainable development and the promotion of creative industries. This paper presents SILKNOW, an EU-H2002 funded project and its application to cultural heritage, as well as to creative industries and design innovation. To this end, it presents the use of image recognition tools applied to cultural heritage, through the interoperability of …

EngineeringArchitectural engineeringGeography Planning and DevelopmentInteroperabilitydesign0211 other engineering and technologies02 engineering and technology[SHS.MUSEO]Humanities and Social Sciences/Cultural heritage and museologyRenewable energy sourcesCreative industriesIndustrial technology11. SustainabilityGE1-350silkSettore L-ART/02 - Storia Dell'Arte ModernaComputingMilieux_MISCELLANEOUSsustainable developmentTecnologia i civilitzacióEnvironmental effects of industries and plants05 social sciences021107 urban & regional planningsustainabilityculture creativeinnovationSustainabilityddc:333.7ValenciaEconomic powerCulture creativeDesign[SHS.INFO]Humanities and Social Sciences/Library and information sciencesSilkTJ807-830Management Monitoring Policy and LawTD194-195ddc:690[INFO.INFO-CY]Computer Science [cs]/Computers and Society [cs.CY]0502 economics and businessTraditional knowledgeInnovationSustainable developmentSettore L-ART/04 - Museologia E Critica Artistica E Del RestauroRenewable Energy Sustainability and the Environmentbusiness.industrycultural heritageEnvironmental sciencesCultural heritage[INFO.INFO-IR]Computer Science [cs]/Information Retrieval [cs.IR]Sustainabilitycreative industryindustrial technologytraditional knowledgebusiness050203 business & managementddc:3337Sustainability
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Experiencing the Smart City Concept: The Challenge of Intelligent Districts

2016

Future cities will become a complex system of variable geometry, where ICT is the main driver of all connections, an intelligent tool that enables the dialogue between different systems, the bonding agent of the smart city. The man still remains the main actor, because he redesigns his habits, corrects his behaviors, shares ideas and solutions based on continuous feedback from the environment. The areas where there are large urban innovations are the field of mobility and energy and ICT of course. Approaches to intelligent cities implementations change, because they are powered by the aspects related to communication. The dimension of the smart districts appears to be the only convincing mo…

EngineeringArchitectural engineeringKnowledge managementbusiness.industryInterface (Java)Information and Communications TechnologyEnergy (esotericism)Smart cityComplex systemDimension (data warehouse)businessImplementationField (computer science)
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Risks of mould growth in different building structures

2014

In the current paper the impact of real Latvian climate conditions on a variety of building constructions is inspected. The influence of the humidity on buildings’ sustainability in three different building units has been appraised. Condensate risks in a multi-layer wall are analyzed by transient outdoor climatic conditions. Risks of mould growth are discussed in detail taking into account the properties of building materials, dependence of humidity on temperature and season. The effect of vapour barrier is analyzed from several aspects. Theoretical analysis has been done based on real test stands built in Riga. Some experimental results are obtained.

EngineeringArchitectural engineeringMoisturemoisture multi-layer wall mould growth test standsbusiness.industrySustainabilityHumiditybusinessCivil engineeringProceedings of the International Conference „Innovative Materials, Structures and Technologies”
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A Multifunctional Public Lighting Infrastructure, Design and Experimental Test

2017

Nowadays, the installation of efficient lighting sources and Information and Communications Technologies can provide economic benefits, energy efficiency, and visual comfort requirements. More advantages can be derived if the public lighting infrastructure integrates a smart grid. This study presents an experimental multifunctional infrastructure for public lighting, installed in Palermo. The system is able to provide smart lighting functions (hotspot Wi-Fi, video-surveillances, car and pedestrian access control, car parking monitoring and support for environmental monitoring). A remote control and monitoring platform called “Centro Servizi” processes the information coming from…

EngineeringArchitectural engineeringMultifunctional street lighting;Information and communications technology integration;Energy efficiency;Machine to machine;Lighting design;Smart lightingMachine to machine020209 energyEnergy Engineering and Power Technology02 engineering and technologyEnvironmental Science (miscellaneous)Information and communications technology integrationlcsh:Technologylcsh:HD72-88lcsh:Economic growth development planning0202 electrical engineering electronic engineering information engineeringWater Science and TechnologySettore ING-IND/11 - Fisica Tecnica Ambientalelcsh:TRenewable Energy Sustainability and the Environmentbusiness.industryLighting designInfrastructure designEnergy efficiency Information and communications technology integration Lighting design Machine to machine Multifunctional street lighting Smart lightingTest (assessment)Energy efficiencySmart lighting.businessMultifunctional street lightingJournal of Sustainable Development of Energy, Water and Environment Systems
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Energy-environmental and cost assessment of a set of strategies for retrofitting a public building toward nearly zero-energy building target

2017

Abstract The purpose of this study was to assess an energy retrofit of a building representative of those in public tertiary stock, to improve energy performance toward nearly Zero-Energy Building (nZEB) requirements. The building is located in the campus of the Politecnico di Milano University (Italy). Several hypothetical improvements regarding the building envelope and plants were assessed in terms of energy savings, costs, and the reduction of greenhouse gas emissions. The results of the study show that it is possible to reduce primary energy demand and associated emissions up to 40% from the current values by adopting market-available and well-proven technological solutions for retrofi…

EngineeringArchitectural engineeringNearly Zero-Energy BuildingPrimary energy020209 energyCase studyGeography Planning and DevelopmentCase study; Energy savings; Nearly Zero-Energy Building; Retrofit strategies; Geography Planning and Development; Civil and Structural Engineering; Renewable Energy Sustainability and the Environment; TransportationTransportation02 engineering and technologyEnergy savingsNearly Zero-Energy Building Retrofit strategies Energy savings Case study0202 electrical engineering electronic engineering information engineeringRetrofittingRenewable EnergyCivil and Structural EngineeringPlanning and DevelopmentRetrofit strategiesZero-energy buildingSettore ING-IND/11 - Fisica Tecnica AmbientaleGeographySustainability and the EnvironmentRenewable Energy Sustainability and the Environmentbusiness.industryEnergy consumptionRenewable energybusinessEnergy-plus-houseBuilding envelopeEfficient energy use
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