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The impact of climate change and building renovation on heating related CO2 emissions on a neighbourhood level

Authors :
Andrić, I.
Silva, Carlos
Pina, A.
Ferrão, P.
Fournier, J.
Lacarrière, Bruno
Le Corre, Olivier
Laboratoire de génie des procédés - environnement - agroalimentaire (GEPEA)
Université de Nantes - UFR des Sciences et des Techniques (UN UFR ST)
Université de Nantes (UN)-Université de Nantes (UN)-IMT Atlantique Bretagne-Pays de la Loire (IMT Atlantique)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Centre National de la Recherche Scientifique (CNRS)-Ecole Polytechnique de l'Université de Nantes (EPUN)
Université de Nantes (UN)-Université de Nantes (UN)-Institut Universitaire de Technologie - Nantes (IUT Nantes)
Université de Nantes (UN)-Institut Universitaire de Technologie Saint-Nazaire (IUT Saint-Nazaire)
Université de Nantes (UN)-Institut Universitaire de Technologie - La Roche-sur-Yon (IUT La Roche-sur-Yon)
Université de Nantes (UN)-Ecole Nationale Vétérinaire, Agroalimentaire et de l'alimentation Nantes-Atlantique (ONIRIS)-Université Bretagne Loire (UBL)
Mines Nantes (Mines Nantes)
Mines Nantes (Mines Nantes)-Université de Nantes - UFR des Sciences et des Techniques (UN UFR ST)
Université de Nantes (UN)-Université de Nantes (UN)-Ecole Nationale Vétérinaire, Agroalimentaire et de l'alimentation Nantes-Atlantique (ONIRIS)-Centre National de la Recherche Scientifique (CNRS)
Source :
CISBAT 2015, CISBAT 2015, Sep 2015, Lausanne, Switzerland
Publication Year :
2015
Publisher :
HAL CCSD, 2015.

Abstract

International audience; Building sector is currently one of the major sources of CO 2 emissions. Considering that the largest proportion of energy in buildings in Europe is used for heating services, significant potential for emissions decrease could be exploited through heat demand reductions. The scope of this paper is to evaluate the impacts of changed climate and building renovation on heating related CO 2 emissions on a neighborhood level. A combination of existing tools (EnergyPLAN, ArcGIS, CCWorldWeatherGen) and a tool previously developed by the authors (resistance-capacitance analogy based heat demand model [1]) were used. Three weather scenarios for the future were considered (low, medium, high temperature increase), as well as four renovation paths (no renovation, shallow, intermediate, deep renovation path). Three heating system options were taken into the account: individual electric heaters in each dwelling, natural gas distribution network with individual boilers in each dwelling and district heating network with centralized heat production in natural gas fueled boiler. Generic neighborhood configuration for Portugal was created based on the district of Alvalade that is located in Lisbon. This particular district was chosen due to the fact that it possesses desirable urban morphology and it was built during several construction periods over the last century. The results showed that the changed climate, by itself, could decrease annual CO 2 emissions from 8% up to 34% in 2050 compared to 2010 (depending on the weather scenario and heating system considered) due to the changed weather parameters. Furthermore, building envelope renovation could enable additional 80-260ktCO 2 savings in cumulative emissions for the regarded period (2010-2050).

Details

Language :
English
Database :
OpenAIRE
Journal :
CISBAT 2015, CISBAT 2015, Sep 2015, Lausanne, Switzerland
Accession number :
edsair.od.......212..43c190a886bf68b661ffa834362195f7