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Athanasios Paschalis

Biographic Data

ID7996604
NAMEAthanasios Paschalis
GIVEN NAMESAthanasios
FAMILY NAMEPaschalis
SIGNATUREPASCHALIS A
AFFILIATIONSImperial College London
ORCID0000-0003-4833-9962
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2018
LATEST PUBLICATION YEAR2023
H-INDEX0
  • Assessing the co-benefits of urban greening coupled with rainwater harvesting management under current and future climates across USA cities

    Open Access•Ziyan Zhang, Barnaby Dobson et al.•ARTICLE•Environmental Research Letters•2023

    Globally, urban areas face multiple challenges owing to climate change. Urban greening (UG) is an excellent option for mitigating flood risk and excess urban heat. Rainwater harvesting (RWH) systems can cope with plant irrigation needs and urban water management. In this study, we investigated how UG and RWH work together to mitigate environmental risks. By incorporating a new RWH module into the urban ecohydrological model Urban Tethys-Chloris (…

  • Diurnal and seasonal patterns of global urban dry islands

    Open Access•Naika Meili, Athanasios Paschalis et al.•ARTICLE•Environmental Research Letters•2022

    Urban heat islands (UHIs) are a widely studied phenomenon, while research on urban-rural differences in humidity, the so called urban dry or moisture islands (UDIs, UMIs), is less common and a large-scale quantification of the seasonal and diurnal patterns of the UDI is still lacking. However, quantification of the UDI/UMI effect is essential to understand the impacts of humidity on outdoor thermal comfort, building energy consumption, and urban …

  • Covariation of vegetation and climate constrains present and future T/ET variability

    Open Access•Athanasios Paschalis, Simone Fatichi et al.•ARTICLE•Environmental Research Letters•2018

    The reliable partitioning of the terrestrial latent heat flux into evaporation (E) and transpiration (T) is important for linking carbon and water cycles and for better understanding ecosystem functioning at local, regional and global scales. Previous research revealed that the transpiration-to-evapotranspiration ratio (T/ET) is well constrained across ecosystems and is nearly independent of vegetation characteristics and climate. Here we investi…

No prominent works on this page.

  • Covariation of vegetation and climate constrains present and future T/ET variability

    Open Access•Athanasios Paschalis, Simone Fatichi et al.•ARTICLE•Environmental Research Letters•2018

    The reliable partitioning of the terrestrial latent heat flux into evaporation (E) and transpiration (T) is important for linking carbon and water cycles and for better understanding ecosystem functioning at local, regional and global scales. Previous research revealed that the transpiration-to-evapotranspiration ratio (T/ET) is well constrained across ecosystems and is nearly independent of vegetation characteristics and climate. Here we investi…

  • Diurnal and seasonal patterns of global urban dry islands

    Open Access•Naika Meili, Athanasios Paschalis et al.•ARTICLE•Environmental Research Letters•2022

    Urban heat islands (UHIs) are a widely studied phenomenon, while research on urban-rural differences in humidity, the so called urban dry or moisture islands (UDIs, UMIs), is less common and a large-scale quantification of the seasonal and diurnal patterns of the UDI is still lacking. However, quantification of the UDI/UMI effect is essential to understand the impacts of humidity on outdoor thermal comfort, building energy consumption, and urban …

  • Assessing the co-benefits of urban greening coupled with rainwater harvesting management under current and future climates across USA cities

    Open Access•Ziyan Zhang, Barnaby Dobson et al.•ARTICLE•Environmental Research Letters•2023

    Globally, urban areas face multiple challenges owing to climate change. Urban greening (UG) is an excellent option for mitigating flood risk and excess urban heat. Rainwater harvesting (RWH) systems can cope with plant irrigation needs and urban water management. In this study, we investigated how UG and RWH work together to mitigate environmental risks. By incorporating a new RWH module into the urban ecohydrological model Urban Tethys-Chloris (…

Ecology (3 works) · Environmental Science (3 works) · Geography (3 works) · Meteorology (3 works) · Atmospheric sciences (2 works) · Climate change (2 works) · Geology (2 works) · Urban Green Space and Health (2 works) · Urban heat island (2 works) · Urban Heat Island Mitigation (2 works)

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