Search results for " energy consumptions"

showing 6 items of 6 documents

Results of a literature review on methods for estimating buildings energy demand at district level

2019

Abstract In the framework of distributed energy planning, evaluating reliable energy profiles of different sectors has a prominent role. At the same time, it is a quite challenging task, since the availability of actual energy profiles of buildings at the district level is not widespread. A survey of over 70 studies in scientific literature has been accomplished and a set of criteria has been defined for classifying the selected contributions based on the energy demand data features, source and/or estimation methods, highlighting the ones adopting hourly energy profiles. As final results, tables summarizing the main methods characteristics and a selection of studies providing directly useab…

Distributed energy systemComputer scienceUrban energy profiles estimation methodsBuildings hourly energy consumption020209 energyDistributed energy systems02 engineering and technologyScientific literatureBuildings hourly energy consumptionsIndustrial and Manufacturing EngineeringTask (project management)Urban energy profiles estimation methodTransport engineeringSet (abstract data type)Buildings hourly energy consumptions; Distributed energy systems; Urban district energy demand estimation; Urban district energy planning; Urban energy profiles estimation methods; Civil and Structural Engineering; Building and Construction; Pollution; Mechanical Engineering; Industrial and Manufacturing Engineering; Electrical and Electronic Engineering020401 chemical engineering0202 electrical engineering electronic engineering information engineering0204 chemical engineeringElectrical and Electronic EngineeringCivil and Structural EngineeringUrban district energy planningSettore ING-IND/11 - Fisica Tecnica AmbientaleEnergy demandbusiness.industryMechanical EngineeringBuilding and ConstructionEnergy planningPollutionGeneral EnergyDistributed generationUrban district energy demand estimationbusinessEnergy (signal processing)Level of detail
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The energy and environmental impacts of Italian households consumptions: An input–output approach

2011

Abstract Promoting sustainable consumption and production patterns is a key challenge for the future, in order to use the Earth resources efficiently, to reduce the greenhouse gas emissions, and to decouple the economic growth from the environmental degradation. New or customized methods have to be applied to support decisions makers in the choice of environmental-friendly products, and to select policy priorities and sustainable strategies. A modified input–output model can aid to analyse the relationships among economic growth, energy consumptions and pollutants, in order to assess the energy and environmental impacts due to the actual production and consumption patterns. The following pa…

Input–output analysis Life cycle assessment Energy consumptions Environmental impacts Sustainable production and consumptionConsumption (economics)Settore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industryInput–output modelEconomic sectorEnvironmental resource managementEnvironmental economicsGoods and servicesEconomicsSustainable consumptionEnvironmental impact assessmentbusinessLife-cycle assessmentEnvironmental degradationRenewable and Sustainable Energy Reviews
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Energy consumptions in different mini dairy plants

2004

Using modern plants, suitable for processing also small amounts of milk, sheep breeders, instead to sell their milk to some dairies, could earn the additional income due to cheese and ricotta sale. The fuel and electrical energy consumptions were measured and evaluated in some mini dairy plants. The results show that mini dairy plants powered by diesel fuel consume less energy per processed milk volume unit than those powered by liquid propane gas.

Mini dairy plants energy consumptions
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A Mathematical Model For Evaluating Energy Consumptions In Life Cycle Assessment.

2014

This paper takes up the ecobalance topic giving prominence to a calculation procedure of necessary energy consumptions for the production of a product in the different phases of a whole life cycle. Are used to identify all stages of the life cycle are determined and simplified formulas for the calculation of specific energy consumption. Is also examined a case where the components of the final product are up to 8. The model is valid for any type of product and through operations research (ie, placing constraints on the variables) you could get to optimal solutions minimizing the objective function.

Settore ING-IND/11 - Fisica Tecnica AmbientaleLife cycle assessment energy consumptions (EC) product
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Energy load Behaviours of Sicilian Hotel: methods for reducing the annual consumptions of bungalow hotels in the Mediterranean area

2005

Starting from the analysis of the energy consumption of some typical Sicilian hotels, it has been possible to assess their annual energy load behaviours, by source type. In addition, it has been also developed a simple model of the annual consumption, by kind of energy load. This approach allowed the comparison of true load-type energy consumption with typical load-type benchmark values (e.g. lighting consumption). In turn, this allows the singling out of feasible methods for the reductions of the energy consumption; the found solutions take into account three fundamental issues: energy, economy and environment. Analysed buildings are represented by typical hotels of the Mediterranean area;…

Settore ING-IND/11 - Fisica Tecnica Ambientalehotel energy consumptions energy load behaviours managing energy problems
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Towards a reduction of greenhouse gas emission from wastewater treatment plants: a new plant wide experimental and modelling approach

2016

The increasing interest in greenhouse gas (GHG) emissions from wastewater treatment plants (WWTPs) has led to the development of new tools for their design and management. Studies about gas emissions show that the sewer collection and the wastewater treatment plant are anthropogenic GHG potential sources, so they contribute to the climate change and air pollution. A wastewater treatment plant receives wastewater from sewers and, while produces treated water for discharge into surface water, emits the three major greenhouse gases, CO2, CH4, and N2O, during the treatment processes, and additional amounts of CO2 and CH4 from the energy demands (Bani Shahabadi et al., 2009). Indeed, energy cons…

modellingGHG emissionSettore ICAR/03 - Ingegneria Sanitaria-Ambientaleenergy consumptionDecision support system; energy consumptions; GHG emissions; modelling; WWTPsDecision support systemWWTPs
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