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Jean-Louis Scartezzini

Datos Biográficos

ID6312461
NOMBREJean-Louis Scartezzini
NOMBRESJean-Louis
APELLIDOScartezzini
FIRMASCARTEZZINI J
AFILIACIONESEcole polytechnique fédérale de Lausanne
ORCID0000-0001-8892-2592
VERIFICADOSí
TOTAL DE OBRAS5
TOTAL DE CITAS2
TOTAL COMO AUTOR5
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2018
AÑO MÁS RECIENTE DE PUBLICACIÓN2022
ÍNDICE H1
  • Impact of the Covid-19 pandemic on the energy performance of residential neighborhoods and their occupancy behavior

    Open Access•Valeria Todeschi, Kavan Javanroodi et al.•ARTICLE•Sustainable Cities and Society•2022

    Several contrasting effects are reported in the existing literature concerning the impact assessment of the COVID-19 outbreak on the use of energy in buildings. Following an in-depth literature review, we here propose a GIS-based approach, based on pre-pandemic, partial, and full lockdown scenarios, using a bottom-up engineering model to quantify these impacts. The model has been verified against measured energy data from a total number of 451 bu…

  • Quantifying the impacts of climate change and extreme climate events on energy systems

    Open Access•A T D Perera, Vahid M Nik et al.•ARTICLE•Nature Energy•2020

  • Spatio-Temporal Relationship between Land Cover and Land Surface Temperature in Urban Areas

    Open Access•Xu Ge, Dasaraden Mauree et al.•ARTICLE•ISPRS International Journal of…•2020

    Currently, more than half of the world’s population lives in cities, which leads to major changes in land use and land surface temperature (LST). The associated urban heat island (UHI) effects have multiple impacts on energy consumption and human health. A better understanding of how different land covers affect LST is necessary for mitigating adverse impacts, and supporting urban planning and public health management. This study explores a dista…

  • A new clustering and visualization method to evaluate urban heat energy planning scenarios

    Open Access•Sara Torabi Moghadam, Silvia Coccolo et al.•ARTICLE•Cities•2019•Citada por: 2•Referencias: 34

  • Cooling potential of greening in the urban environment, a step further towards practice

    Open Access•Silvia Coccolo, Jérôme H Kämpf et al.•ARTICLE•Sustainable Cities and Society•2018

  • A new clustering and visualization method to evaluate urban heat energy planning scenarios

    Open Access•Sara Torabi Moghadam, Silvia Coccolo et al.•ARTICLE•Cities•2019•Citada por: 2•Referencias: 34

  • Cooling potential of greening in the urban environment, a step further towards practice

    Open Access•Silvia Coccolo, Jérôme H Kämpf et al.•ARTICLE•Sustainable Cities and Society•2018

  • A new clustering and visualization method to evaluate urban heat energy planning scenarios

    Open Access•Sara Torabi Moghadam, Silvia Coccolo et al.•ARTICLE•Cities•2019•Citada por: 2•Referencias: 34

  • Quantifying the impacts of climate change and extreme climate events on energy systems

    Open Access•A T D Perera, Vahid M Nik et al.•ARTICLE•Nature Energy•2020

  • Spatio-Temporal Relationship between Land Cover and Land Surface Temperature in Urban Areas

    Open Access•Xu Ge, Dasaraden Mauree et al.•ARTICLE•ISPRS International Journal of…•2020

    Currently, more than half of the world’s population lives in cities, which leads to major changes in land use and land surface temperature (LST). The associated urban heat island (UHI) effects have multiple impacts on energy consumption and human health. A better understanding of how different land covers affect LST is necessary for mitigating adverse impacts, and supporting urban planning and public health management. This study explores a dista…

  • Impact of the Covid-19 pandemic on the energy performance of residential neighborhoods and their occupancy behavior

    Open Access•Valeria Todeschi, Kavan Javanroodi et al.•ARTICLE•Sustainable Cities and Society•2022

    Several contrasting effects are reported in the existing literature concerning the impact assessment of the COVID-19 outbreak on the use of energy in buildings. Following an in-depth literature review, we here propose a GIS-based approach, based on pre-pandemic, partial, and full lockdown scenarios, using a bottom-up engineering model to quantify these impacts. The model has been verified against measured energy data from a total number of 451 bu…

Geography (5 obras) · Engineering (4 obras) · Environmental Science (4 obras) · Urban Heat Island Mitigation (4 obras) · Building Energy and Comfort Optimization (3 obras) · Civil engineering (3 obras) · Meteorology (3 obras) · Cartography (2 obras) · Climate change (2 obras) · Computer Science (2 obras)

Ethnos_APP • Proyecto Open Source • Licencia MIT • Frontend v2.0.0 • Privacidad y Cookies • Documentación de la API: api.ethnos.app/docs • Código de la API: GitHub • DOI: 10.5281/zenodo.17049435 • Código del Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae