Search results for "Heating"

showing 10 items of 248 documents

A dish-stirling solar concentrator coupled to a seasonal thermal energy storage system in the southern mediterranean basin: A cogenerative layout hyp…

2020

Abstract In the future, renewable energy sources will increasingly represent an efficient energy source capable of meeting the demands of residential and industrial buildings avoiding the emissions of greenhouse gases into the atmosphere. In this paper, a heat and electric power cogeneration plant implementing a field of dish-Stirling collectors, a seasonal geothermal storage and a system of water-to-water heat pumps is proposed for the first time. The cogeneration plant has been designed both to supply thermal energy to the heating system of Building 9 of the Department of Engineering in Palermo and to produce electricity. The operation of the plant has been tested by means of hourly-based…

Stirling engine020209 energyEnergy Engineering and Power Technology02 engineering and technologyCSP technologyThermal energy storage systemslaw.inventionCogeneration020401 chemical engineeringlaw0202 electrical engineering electronic engineering information engineering0204 chemical engineeringProcess engineeringCogenerationGeothermal systemsSettore ING-IND/11 - Fisica Tecnica AmbientaleSeasonal thermal energy storageRenewable Energy Sustainability and the Environmentbusiness.industryRenewable energydish-Stirling concentratorFuel TechnologyHeating systemNuclear Energy and EngineeringEnvironmental scienceElectric powerbusinessThermal energyEfficient energy useEnergy Conversion and Management
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Process analysis of a biomass-based quad-generation plant for combined power, heat, cooling, and synthetic natural gas production

2015

Abstract A new concept for upgrading distributed co-generation plants to quad-generation plants, which combine the production of power, heating, cooling and synthetic natural gas (SNG), is designed and analyzed. Five cases with SNG production ranging from 0% to 100% of total energy outputs are designed to simulate different modes of operation. The quad-generation system is simulated using ASPEN PLUS and described by simulating different portions of the system. This paper also describes the new process, which is of particular interest for improving the total first law efficiency. With this system, it is possible to increase the efficiency of natural resource utilization, minimize the environ…

Substitute natural gasEngineeringWind powerRenewable Energy Sustainability and the Environmentbusiness.industryQuad-generationEnvironmental engineeringSNGEnergy Engineering and Power TechnologyBiomassStrawProcess integrationRenewable energyVDP::Teknologi: 500Fuel TechnologyHeating systemNuclear Energy and EngineeringDistributed generationProcess integrationbusinessProcess engineeringEfficient energy use
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Metastability and hysteresis of the vortex states in rotating superfluid3He-B

1996

We have investigated the vortex core transition in 3He-B by measuring the associated changes in mutual friction dissipation within the superfluid. If rotation is continuously stopped and restarted while cooling or warming then the transition occurs at a clearly defined temperature, but temperature sweeps during continuous rotation show substantial supercooling and superheating. Moreover, the high temperature vortex shows a continuum of metastable states when supercooled to a constant, arbitrary low temperature, the mutual friction dissipaton depending on the temperature at which rotation was started. Our current interpretation is that the high temperature vortex state is a temperature-depen…

SuperfluidityPhysicsSuperheatingContinuous rotationCondensed matter physicsCondensed Matter::SuperconductivityMetastabilityGeneral Physics and AstronomyDissipationSupercoolingVortex stateVortexCzechoslovak Journal of Physics
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Computer simulation of disordering and premelting of low-index faces of copper.

1992

Molecular dynamics and the effective-medium theory have been applied to investigate the structure and dynamics of (110), (100), and (111) faces of copper in the whole temperature range from 0 K up to the bulk melting point, which has been determined to be 1240\ifmmode\pm\else\textpm\fi{}25 K. The observed order in the surface stability follows the order in the packing density. (110) disorders first via anharmonic effects (up to 700 K), then by vacancy-adatom formation and finally by premelting of the surface at about 1200 K. The (110) solid-melt interface is anisotropic and broadened, having a tendency to form small fluctuating (111) facets in equilibrium, which is suggested to be the atomi…

SuperheatingMolecular dynamicsMaterials sciencechemistryAnharmonicityMelting pointchemistry.chemical_elementThermodynamicsAtmospheric temperature rangeAnisotropyCopperPremeltingPhysical review. B, Condensed matter
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Application of Thermographic Techniques for the Detection of Failures on Photovoltaic Modules

2019

The paper focuses on thermography as a useful investigation tool for diagnosis, detection and prevention of failures of photovoltaic modules. The paper describes the faults detectable by thermographic investigations and how to conduct these investigantions. Then the results of some analyses conducted on a photovoltaic field are presented. The investigations made possible to identify faulty modules with hot spots by measuring localized superheat due to the presence of concentrated deposits on the exposed surface of the module and the superheating due to the presence of sand/dust deposits distributed on a significant portion of the module surface. The thermographic investigations can be used …

SuperheatingSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaComputer sciencefaults PV modules thermographic investigations020209 energy020208 electrical & electronic engineeringThermographyPhotovoltaic system0202 electrical engineering electronic engineering information engineeringSettore ING-IND/10 - Fisica Tecnica Industriale02 engineering and technologySettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciAutomotive engineering
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Sustainable and cost-efficient energy supply and utilisation through innovative concepts and technologies at regional, urban and single-user scales

2019

Abstract The environmental impact of the energy sector and the security and economics of energy supply and utilisation have been raising increasing concerns, stimulating the search for innovative solutions for a sustainable use of resources. This article provides an overview of published research in this area, with a focus on papers contributed in special issues of leading journals dedicated to the series of Conferences on Sustainable Development of Energy, Water and Environment Systems (SDEWES), including the articles in the current special issue. Based on this review, research trends are identified and achievements supporting the energy transition are highlighted. The studies that focused…

Sustainable heatingLow-energy buildings020209 energy02 engineering and technologyEnergy transitionRenewable energy sourcesIndustrial and Manufacturing Engineering020401 chemical engineeringSettore ING-IND/10 - Fisica Tecnica Industriale0202 electrical engineering electronic engineering information engineeringEnergy supply0204 chemical engineeringElectrical and Electronic EngineeringWaste heat recoveryCivil and Structural EngineeringFlexibility (engineering)Sustainable developmentSustainability cost heat electricity technologiesSDEWESMulti-generationbusiness.industryMechanical EngineeringBuilding and ConstructionEnergy planningEnvironmental economicsPollutionRenewable energyGeneral EnergyRenewable energy sources ; Sustainable heating ; Low-energy buildings ; Multi-generation ; Waste heat recovery ; SDEWESSustainabilityBusinessEfficient energy use
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Overview of first Wendelstein 7-X high-performance operation

2019

Abstract The optimized superconducting stellarator device Wendelstein 7-X (with major radius , minor radius , and plasma volume) restarted operation after the assembly of a graphite heat shield and 10 inertially cooled island divertor modules. This paper reports on the results from the first high-performance plasma operation. Glow discharge conditioning and ECRH conditioning discharges in helium turned out to be important for density and edge radiation control. Plasma densities of with central electron temperatures were routinely achieved with hydrogen gas fueling, frequently terminated by a radiative collapse. In a first stage, plasma densities up to were reached with hydrogen pellet injec…

TechnologyCONFINEMENT01 natural sciencesimpurities010305 fluids & plasmaslaw.inventionECR heatingDivertorDENSITY LIMITlawData_FILESGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)004 Datenverarbeitung; InformatikPhysicsGlow dischargeDivertorCondensed Matter PhysicsContent (measure theory)ComputingMethodologies_DOCUMENTANDTEXTPROCESSINGElectron temperatureAtomic physicsddc:620StellaratorImpuritiesNuclear and High Energy PhysicsTechnology and Engineeringplasma performancechemistry.chemical_elementAtmospheric-pressure plasmaPHYSICSstellaratorPhysics::Plasma PhysicsNBI heating0103 physical sciencesdivertor010306 general physicsHeliumStellaratorPlasma performanceturbulenceFísicaW7-XTurbulenceTheoryofComputation_MATHEMATICALLOGICANDFORMALLANGUAGESchemistryddc:004ddc:600Energy (signal processing)SYSTEMNuclear Fusion
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Properties and constraints of cheating-immune secret sharing schemes

2006

AbstractA secret sharing scheme is a cryptographic protocol by means of which a dealer shares a secret among a set of participants in such a way that it can be subsequently reconstructed by certain qualified subsets. The setting we consider is the following: in a first phase, the dealer gives in a secure way a piece of information, called a share, to each participant. Then, participants belonging to a qualified subset send in a secure way their shares to a trusted party, referred to as a combiner, who computes the secret and sends it back to the participants.Cheating-immune secret sharing schemes are secret sharing schemes in the above setting where dishonest participants, during the recons…

TheoryofComputation_MISCELLANEOUSHomomorphic secret sharingCryptography0102 computer and information sciences02 engineering and technologyShared secretComputer securitycomputer.software_genre01 natural sciencesSecret sharingCheating0202 electrical engineering electronic engineering information engineeringDiscrete Mathematics and CombinatoricsSecret sharingMathematicsbusiness.industryApplied MathematicsCryptographic protocol16. Peace & justiceShamir's Secret Sharing010201 computation theory & mathematicsResilient functionsCryptographySecure multi-party computation020201 artificial intelligence & image processingVerifiable secret sharingbusinesscomputerDiscrete Applied Mathematics
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Optimisation of Thermochromic Thin Films on Glass; Design of Intelligent Windows

2010

Theoretically thermochromic glazing has the potential to reduce energy consumption in buildings by allowing visible light for day lighting, reducing unwanted solar gain during the cooling season, while allowing useful solar gain in the heating season. In this study building simulation is used to predict the savings made by novel thermochromic glazing coatings compared to standard products, for locations with different climates. The results suggest that thermochromic glazing can have a significant energy saving effect compared to current approaches.

ThermochromismMaterials sciencebusiness.industryHeating seasonEnergy Simulation Thermochromic Glazing Chemical Vapor Deposition.Settore ICAR/10 - Architettura TecnicaEnergy consumptionBuilding simulationEngineering physicsGlazingOpticsSolar gainThin filmEnergy simulationbusiness
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Characterization and reactivity of charcoal from high temperature pyrolysis (800-1600°C)

2019

This study presents the effect of wood origin and heat treatment temperature on the CO2 reactivity, nanostructure and carbon chemistry of chars prepared at 800, 1200, and 1600 °C in slow pyrolysis reactors. The structure of charcoal was characterized by transmission electron microscopy, Raman spectroscopy, mercury intrusion porosimetry and N2 adsorption. The CO2 reactivity of char was investigated by thermogravimetric analysis. Results showed that spruce and oak chars have similar reactivity at all heat treatment temperatures. The oak char prepared at 1600 °C contained long and flat graphene layers and interplanar distance that is similar to graphite and thus, was more ordered t…

Thermogravimetric analysisMaterials science020209 energyGeneral Chemical EngineeringChemieEnergy Engineering and Power Technologychemistry.chemical_element02 engineering and technologyAdsorption020401 chemical engineering0202 electrical engineering electronic engineering information engineeringReactivity (chemistry)CharGraphite0204 chemical engineeringCharcoallow heating rateOrganic Chemistrynon-graphitizing carbonCO2 reactivityFuel TechnologyChemical engineeringchemistryhigh-temperature pyrolysisvisual_artvisual_art.visual_art_mediumPyrolysisCarboncharcoal
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