Search results for "Efficient energy use"

showing 10 items of 282 documents

Novel Thermal Technologies and Fermentation

2016

Fermentation is one of the oldest methods practiced by human beings for the transformation of some food products in order to extend shelf-life and provide novel organoleptic properties. Moreover, during fermentation a high amount of valuable compounds with important commercial benefits are produced. Therefore, there is a need to develop energy efficient and environmental-friendly sustainable processes in order to improve fermentation-related processes. Traditionally, conventional thermal treatments have been used in food fermentation; however, the organoleptic properties of the treated products can be altered. As a result, alternative approaches have been sought by food industries in order …

0106 biological sciencesComputer scienceOrganoleptic02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences010608 biotechnologyFood productsThermalFermentationBiochemical engineering0210 nano-technologyFood qualityFermentation in food processingEfficient energy use
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A new rationale for not picking low hanging fruits: The separation of ownership and control

2019

Recent attempts at explaining the energy-efficiency gap rely on considerations related to organizational and behavioral/cognitive failures. In this paper, we build on the strategic delegation literature to advance a complementary explanation. It is shown that strategic market interaction may encourage business owners to instill a bias against energy efficiency in managerial compensation contracts. Since managers respond to financial incentives, their decisions will reflect this bias, resulting in lack of investment.

0106 biological sciences[QFIN]Quantitative Finance [q-fin]Compensation (psychology)Control (management)Separation (aeronautics)strategic delegation010501 environmental sciencesInvestment (macroeconomics)[SHS.ECO]Humanities and Social Sciences/Economics and Finance01 natural sciences[SHS]Humanities and Social Sciences010601 ecologyFinancial incentivesenergy paradoxStrategic delegationBusiness[SHS.ECO] Humanities and Social Sciences/Economics and Financebehavioral biasIndustrial organizationenergy efficiency0105 earth and related environmental sciencesGeneral Environmental ScienceEfficient energy use
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Wireless NoC for Inter-FPGA Communication: Theoretical Case for Future Datacenters

2020

Integration of FPGAs in datacenters might have different motivations from acceleration to energy efficiency, but the goal of better performance tops all. FPGAs are being utilized in a variety of ways today, tightly coupled with heterogenous computing resources, and as a standalone network of homogenous resources. Open source software stacks, propriety tool chain, and programming languages with advanced methodologies are hitting hard on the programmability wall of the FPGAs. The deployment of FPGAs in datacenters will neither be sustainable nor economical, without realizing the multi-tenancy in multiple FPGAs. Inter-FPGA communication among multiple FPGAs remained relatively less addressed p…

020203 distributed computingComputer sciencebusiness.industryWireless networkDistributed computingCloud computing02 engineering and technologyVirtualizationcomputer.software_genreBottleneck020202 computer hardware & architectureSoftware deployment0202 electrical engineering electronic engineering information engineeringWireless[INFO]Computer Science [cs]businessField-programmable gate arraycomputerComputingMilieux_MISCELLANEOUSEfficient energy use2020 IEEE 23rd International Multitopic Conference (INMIC)
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Energy Efficient Optimization for Computation Offloading in Fog Computing System

2017

In this paper, we investigate the energy efficient computation offloading scheme in a multi-user fog computing system. We consider the users need to make the decision on whether to offload the tasks to the fog node nearby, based on the energy consumption and delay constraint. In particular, we utilize queuing theory to bring a thorough study on the energy consumption and execution delay of the offloading process. Two queuing models are applied respectively to model the execution processes at the mobile device (MD) and fog node. Based on the theoretical analysis, an energy efficient optimization problem is formulated with the objective to minimize the energy consumption subjects to execution…

020203 distributed computingOptimization problemComputer sciencebusiness.industryNode (networking)Distributed computing020206 networking & telecommunicationsCloud computing02 engineering and technologyEnergy consumptionDistributed algorithm0202 electrical engineering electronic engineering information engineeringComputation offloadingbusinessMobile deviceEdge computingEfficient energy useGLOBECOM 2017 - 2017 IEEE Global Communications Conference
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Green telecommunication networks to mitigate CO 2 emissions

2020

Reducing energy consumption has become a hot research topic in the past few years. The concept of Green Networking is gaining popularity not only because of the growing environmental awareness worldwide but also the economic opportunities and benefits of reducing energy consumption in the ICT industry. In this work, we will identify the importance of green research and explore the state of the art in the field with a special focus on green base stations. After identifying the key green metrics, we will explore the energy efficiency of traditional base stations and review the main possible improvements to its current structure as a standalone unit as well as the base station as a component i…

020203 distributed computingbusiness.industryComputer science02 engineering and technologyEnergy consumptionEnvironmental economicsUnit (housing)Renewable energyBase stationWork (electrical)Information and Communications Technology0202 electrical engineering electronic engineering information engineeringCellular network020201 artificial intelligence & image processingbusinessEfficient energy useProceedings of the 10th Euro-American Conference on Telematics and Information Systems
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A solar assisted seasonal borehole thermal energy system for a non-residential building in the Mediterranean area

2019

Abstract Solar heating and cooling systems are reliable and feasible solutions among renewable energy technologies. Indeed, solar thermal devices help reduce primary energy consumption and can reduce electricity demand, thus representing one of the best options for satisfying heating and/or cooling energy supply. The Borehole Thermal Energy Storage (BTES) represents one of the best promising option among the various storage technologies, because the size of the storage can be easily extended by drilling additional boreholes and simply connecting the pipes to the existing boreholes; the overall energy efficiency of this system is about 40–60%. In this paper, the authors present an applicatio…

020209 energyBorehole02 engineering and technologyTRNSYSSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciThermal energy storagelaw.inventionGeothermal heat pumpSolar energylaw0202 electrical engineering electronic engineering information engineeringGeneral Materials ScienceProcess engineeringSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industryRenewable Energy Sustainability and the Environment021001 nanoscience & nanotechnologyRenewable energyTRNSYSHeating systemBorehole thermal energy storageEnvironmental scienceMaterials Science (all)0210 nano-technologybusinessThermal energyEfficient energy useHeat pump
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Energy Policies and Sustainable Management of Energy Sources

2017

Sustainability of current energy policies and known mid-term policies are analised in their multiple facets. First an overview is given about the trend of global energy demand and energy production, analysing the share of energy sources and the geographic distribution of demand, on the basis of statistics and projections published by major agencies. The issue of sustainability of the energy cycle is finally addressed, with specific reference to systems with high share of renewable energy and storage capability, highlighting some promising energy sources and storage approaches.

020209 energyGeography Planning and DevelopmentEnergy currentTJ807-83002 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawEnergy sourceSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciTD194-19501 natural sciencesRenewable energy sourcesEnergy storageEnergy policyrenewable resource0202 electrical engineering electronic engineering information engineeringGE1-350Renewable sourcesustainability; energy resource; renewable resource; energy policy; global perspectives; sustainable developmentrenewable sources0105 earth and related environmental sciencessustainable developmentEnergy demandEnvironmental effects of industries and plantsRenewable Energy Sustainability and the Environmentbusiness.industryglobal perspectivesotherEnvironmental economicsRenewable energyEnvironmental sciencesEnergy efficiencyenergy resourceSustainabilitySustainable managementSustainabilityBusinessEnergy sourceenergy sourcesenergy policyEfficient energy use
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Impact Analysis Using Life Cycle Assessment of Asphalt Production from Primary Data

2020

Road construction and maintenance have a great impact on the environment, owing to the huge volumes of resources involved. Consequently, current production procedures and technologies must be properly investigated, for identifying and quantifying the life cycle environmental impacts produced. In this paper, primary data, i.e., site-specific data directly collected or measured on a reference plant, are analyzed for calculating the impact of the production of a hot mix asphalt. The analysis is performed in a from &ldquo

020209 energyGeography Planning and DevelopmentTJ807-83002 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawTD194-19501 natural sciencesRenewable energy sourcesAsphalt pavementenergy consumptionemission0202 electrical engineering electronic engineering information engineeringSettore ICAR/04 - Strade Ferrovie Ed AeroportiProduction (economics)GE1-350Life-cycle assessmentReliability (statistics)0105 earth and related environmental sciencesSettore ING-IND/11 - Fisica Tecnica AmbientaleRoad constructionEnvironmental effects of industries and plantsRenewable Energy Sustainability and the Environmentasphalt productionLCAemissionsEnergy consumptionenvironmental impactsEnvironmental economicsEnvironmental sciencesAsphalt production; Emissions; Energy consumption; Environmental impacts; Foreground data; LCAAsphaltEnvironmental scienceforeground dataEfficient energy useSustainability
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Analysis of Electrical Energy Demands in Friction Stir Welding of Aluminum Alloys

2017

Abstract Manufacturing processes, as used for discrete part manufacturing, are responsible for a substantial part of the environmental impact of products. Despite that, most of metalworking processes are still poorly documented in terms of environmental footprint. To be more specific, the scientific research has well covered conventional machining processes, concerning the other processes there is a lack of knowledge in terms of environmental load characterization instead. The present paper aims to contribute to fill this knowledge gap and an energetic analysis of Friction Stir welding (FSW) is presented. Following the CO2PE! methodological approach, power studies and a preliminary time stu…

0209 industrial biotechnologyAluminum alloyMaterials scienceProcess (engineering)Electric potential energyFriction Stir WeldingSustainable manufacturing02 engineering and technologyGeneral MedicineEnergy consumption021001 nanoscience & nanotechnologyManufacturing engineeringEnergy efficiencyEngineering (all)020901 industrial engineering & automationMachiningMetalworkingFriction stir weldingEnvironmental impact assessment0210 nano-technologySettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneEfficient energy useProcedia Engineering
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Manufacturing processes as material and energy efficiency strategies enablers: The case of Single Point Incremental Forming to reshape end-of-life me…

2021

Abstract Making materials consumes about 21% of the global energy demand; concerning metals production, it accounts for about 8% of total global energy consumption. Circular economy strategies such as longer life, more intense use, repair, product upgrades, modularity, remanufacturing, component reuse, and open/closed-loop recycling are strategies to put in place urgently to reduce the environmental impact of raw material production. Although recycling of metals is the most used strategy and is being improved in terms of efficiency, it is mandatory moving towards more virtuous circular economy strategies, such as product/component reuse. In this paper a novel reuse strategy for sheet metal …

0209 industrial biotechnologyCircular economybusiness.industryComputer scienceProcess (engineering)Circular economyReshaping02 engineering and technologyReuseEnergy and resource efficiencyEnvironmentally friendlyIndustrial and Manufacturing EngineeringComponent reuse020303 mechanical engineering & transports020901 industrial engineering & automation0203 mechanical engineeringComponent (UML)Production (economics)Process engineeringbusinessRemanufacturingEfficient energy use
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