Search results for "THERMAL"

showing 10 items of 3576 documents

Building Automation and Control Systems and Electrical Distribution Grids: A Study on the Effects of Loads Control Logics on Power Losses and Peaks

2018

Growing home comfort is causing increasing energy consumption in residential buildings and a consequent stress in urban medium and low voltage distribution networks. Therefore, distribution system operators are obliged to manage problems related to the reliability of the electricity system and, above all, they must consider investments for enhancing the electrical infrastructure. The purpose of this paper is to assess how the reduction of building electricity consumption and the modification of the building load profile, due to load automation, combined with suitable load control programs, can improve network reliability and distribution efficiency. This paper proposes an extensive study on…

Control and OptimizationComputer science020209 energyEnergy Engineering and Power Technologydemand-side management (DSM)Power losse02 engineering and technologyLoad profilelcsh:TechnologyDemand responseBuilding AutomationBuilding Automation and Control (BAC)Thermal0202 electrical engineering electronic engineering information engineeringpower lossesdemand-side managementElectrical and Electronic EngineeringEngineering (miscellaneous)Building automationRenewable Energy Sustainability and the Environmentbusiness.industrylcsh:TControl (BAC)Energy consumptionAutomationReliability engineeringSettore ING-IND/33 - Sistemi Elettrici Per L'Energiademand responseControl systemload controlElectricitybusinessLow voltageBuilding Automation and Control (BAC); demand-side management; demand-side management (DSM); demand response; load control; power lossesEnergy (miscellaneous)Energies
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The effect of the axial heat transfer on space charge accumulation phenomena in HVDC cables

2020

To date, it has been widespread accepted that the presence of space charge within the dielectric of high voltage direct current (HVDC) cables is one of the most relevant issues that limits the growing diffusion of this technology and its use at higher voltages. One of the reasons that leads to the establishment of space charge within the insulation of cables is the temperature dependence of its conductivity. Many researchers have demonstrated that high temperature drop over the insulation layer can lead to the reversal of the electric field profile. In certain conditions, this can over-stress the insulation during polarity reversal (PR) and transient over voltages (TOV) events accelerating …

Control and OptimizationMaterials science020209 energyEnergy Engineering and Power Technology02 engineering and technologyDielectriclcsh:Technology01 natural sciencesSpace chargelaw.inventionlawTransmission line0103 physical sciences0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringEngineering (miscellaneous)010302 applied physicsPolarity reversalThermal ratinglcsh:TRenewable Energy Sustainability and the EnvironmentMechanicsSpace chargeHVDC cablesSettore ING-IND/31 - Elettrotecnicaspace charge; thermal rating; HVDC cablesHeat transferHigh-voltage direct currentAlternating currentEnergy (miscellaneous)Voltage
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Fossil Fuel and Biofuel Boilers in Ukraine: Trends of Changes in Levelized Cost of Heat

2022

An increase in the share of renewables in heat supply systems is a promising direction to reach sustainable development goals and decarbonization. Decision makers should consider various factors, including energy market prices, the availability of biofuels, boiler and auxiliary equipment costs, logistic costs, and the taxation system. In the European Union, the energy crisis causes a rapid increase in fossil fuel prices. Moreover, the use of fossil fuels results in greenhouse gas emissions, which threatens the achievement of sustainable development goals. We studied the influence of the delivery cost and the value of environmental tax rates on the levelized cost of heat. Low-capacity boiler…

Control and OptimizationRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power Technologylevelized cost of heatbiofuel; levelized cost of heat; heat supply; thermal energy; delivery costs; environmental tax rates; solid fuel boilerBuilding and Constructionheat supplysolid fuel boilerthermal energybiofueldelivery costsElectrical and Electronic EngineeringEngineering (miscellaneous)environmental tax ratesEnergy (miscellaneous)Energies
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FEM Analysis: A Review of the Most Common Thermal Bridges and Their Mitigation

2022

The necessity to improve the energy saving potential of buildings is now a duty. European and national policies are being implemented to address the important decisions being made on this subject. For these reasons, several studies focus on this relevant topic. This paper review not only focusses on it but studies it in-depth. A commercial 3D simulation software was used to design a building sited in Palermo estimating the thermal losses before and after external envelope insulation. In particular, all the thermal bridges (TBs) were analysed with the finite element method (FEM) and mitigated with rock wool insulation. The paper shows the linear thermal transmittance difference and heat flux…

Control and OptimizationSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbuilding energy saving FEM analysis thermal bridges thermal bridges mitigationEnergy Engineering and Power TechnologyElectrical and Electronic EngineeringEngineering (miscellaneous)Energy (miscellaneous)
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Controlling Thermal Flows through Natural Materials in Building Construction Sector

2019

Nowadays, the attention about the building sustainability is increasingly emerging, because of the major responsibility of the building field on the environmental degradation: both in terms of energy consumption from non-renewable sources and the raw materials impoverishment. In addition, the level of comfort required by users is growing and the thermal insulation of buildings becomes the key element for the reduction of energy consumption and CO2 emissions, both in the case of new construction and of the existing ones. The heat load of a building depends on the presence of insulating material which defines the performance of the building envelope. The main purpose of this work is both to i…

Control heating exchange building envelope energy saving natural materialEngineeringSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiSettore ING-IND/11 - Fisica Tecnica AmbientaleNatural materialsbusiness.industryThermalGeneral EngineeringSettore ICAR/10 - Architettura TecnicabusinessCivil engineeringBuilding construction
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In-situ monitoring by Raman spectroscopy of the thermal doping of graphene and MoS2 in O-2-controlled atmosphere

2017

The effects of temperature and atmosphere (air and O2) on the doping of monolayers of graphene (Gr) on SiO2 and Si substrates, and on the doping of MoS2 multilayer flakes transferred on the same substrates have been investigated. The investigations were carried out by in situ micro-Raman spectroscopy during thermal treatments up to 430 °C, and by atomic force microscopy (AFM). The spectral positions of the G and 2D Raman bands of Gr undergo only minor changes during treatment, while their amplitude and full width at half maximum (FWHM) vary as a function of the temperature and the used atmosphere. The thermal treatments in oxygen atmosphere show, in addition to a thermal effect, an effect a…

Controlled atmosphereMaterials science2Analytical chemistrythermal dopingGeneral Physics and Astronomychemistry.chemical_elementtwo-dimensional (2D) materials02 engineering and technologyMoSlcsh:Chemical technology010402 general chemistrylcsh:Technology01 natural sciencesOxygenFull Research Paperlaw.inventionPhysics and Astronomy (all)symbols.namesakelawMonolayerNanotechnologylcsh:TP1-1185General Materials ScienceElectrical and Electronic Engineeringlcsh:ScienceSpectroscopylcsh:TGrapheneSettore FIS/01 - Fisica SperimentaleDopinggraphenetechnology industry and agriculture021001 nanoscience & nanotechnologylcsh:QC1-9990104 chemical sciencesNanoscienceFull width at half maximumTwo-dimensional (2D) materialchemistryRaman spectroscopysymbolslcsh:QMaterials Science (all)0210 nano-technologyRaman spectroscopyMoS2lcsh:Physics
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Graphene p-Type Doping and Stability by Thermal Treatments in Molecular Oxygen Controlled Atmosphere

2015

Doping and stability of monolayer low defect content graphene transferred on a silicon dioxide substrate on silicon are investigated by micro-Raman spectroscopy and atomic force microscopy (AFM) during thermal treatments in oxygen and vacuum controlled atmosphere. The exposure to molecular oxygen induces graphene changes as evidenced by a blue-shift of the G and 2D Raman bands, together with the decrease of I2D/IG intensity ratio, which are consistent with a high p-type doping (∼1013 cm-2) of graphene. The successive thermal treatment in vacuum does not affect the induced doping showing this latter stability. By investigating the temperature range 140-350 °C and the process time evolution, …

Controlled atmosphereMaterials scienceSiliconGrapheneElectronic Optical and Magnetic MaterialDopinggrapheneSettore FIS/01 - Fisica SperimentaleAnalytical chemistrychemistry.chemical_elementSurfaces Coatings and FilmSubstrate (electronics)Thermal treatmentOxygenSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionGeneral EnergyEnergy (all)chemistrylawMonolayeroxygen annealingp-type dopingPhysical and Theoretical Chemistry
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Ethyl Hexanoate Transfer Modeling in Carrageenan Matrices for Determination of Diffusion and Partition Properties.

2007

 ; Aroma compound properties in food matrices, such as volatility and diffusivity, have to be determined to understand the effect of composition and structure on aroma release and perception. This work illustrates the use of mass transfer modeling to identify diffusion and partition properties of ethyl hexanoate in water and in carrageenan matrices with various degrees of structure. The comparison of results obtained with a diffusive model to those obtained with a convective model highlights the importance of considering the appropriate transfer mechanism. Modeling of the preliminary experimental steps ensures correct estimation of the conditions for the main aroma release step. The obtaine…

ConvectionChemical PhenomenaAnalytical chemistryThermodynamicsCarrageenanThermal diffusivity01 natural sciencesPhase TransitionVOLATILE COMPOUNDDiffusionchemistry.chemical_compound0404 agricultural biotechnologyMODELINGAROMA RELEASE[SDV.IDA]Life Sciences [q-bio]/Food engineeringPartition (number theory)Aroma compoundPARTITION COEFFICIENTCaproatesAromabiologyChemistry Physical010401 analytical chemistry[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringEthyl hexanoate04 agricultural and veterinary sciencesGeneral ChemistryMASS TRANSFERbiology.organism_classificationDIFFUSION COEFFICIENT040401 food science0104 chemical sciencesCarrageenanKineticschemistryCONVECTIONOdorantsThermodynamicsVolatilizationGeneral Agricultural and Biological SciencesVolatility (chemistry)
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CdTe crystal growth process by the Bridgman method: numerical simulation

2001

Abstract Numerical simulation of the CdTe crystal growth process by the Bridgman method is made by using the commercial computational code FLUENT for the mathematical solution of the governing equations. To reduce computational effort, we have made use of a two level strategy. In the first level we have considered the whole system formed by the ampoule with the liquid–solid charge, the furnace, and the air between them. The heat transfer is assumed to occur by conduction, convection and radiation between the furnace and the ampoule, and only by conduction through the ampoule wall and the solid and liquid CdTe. In the second level we focus on the ampoule and its content, using the values of …

ConvectionChemistryMineralogyCrystal growthMechanicsCondensed Matter PhysicsThermal conductionAmpouleInorganic ChemistryTemperature gradientHeat transferThermalMaterials ChemistryFluentJournal of Crystal Growth
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Heat transfer simulation in a vertical Bridgman CdTe growth configuration

1999

Modelling and numerical simulation of crystal growth processes have been shown to be powerful tools in order to understand the physical effects of different parameters on the growth conditions. In this study a finite difference/control volume technique for the study of heat transfer has been employed. This model takes into account the whole system: furnace temperature profile, air gap between furnace walls and ampoule, ampoule geometry, crucible coating if any, solid and liquid CdTe thermal properties, conduction, convection and radiation of heat and phase change. We have used the commercial code FLUENT for the numerical resolution that can be running on a personal computer. Results show th…

ConvectionChemistryMineralogyMechanicsCondensed Matter PhysicsThermal conductionAmpouleControl volumeInorganic ChemistryThermal radiationHeat transferThermalPersonal computerMaterials ChemistryJournal of Crystal Growth
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