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Beniamino Gioli

Biographic Data

ID7994537
NAMEBeniamino Gioli
GIVEN NAMESBeniamino
FAMILY NAMEGioli
SIGNATUREGIOLI B
AFFILIATIONSIstituto di Biometeorologia
ORCID0000-0001-7631-2623
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS0
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2016
LATEST PUBLICATION YEAR2026
H-INDEX0
  • Quantifying the thermal mitigation effects of urban parks under different irrigation scenarios and tree-densities using Envi-met and field measurements

    Open Access•Tommaso Giordano, Fabio Castelli et al.•ARTICLE•Sustainable Cities and Society•2026

  • Impact of photovoltaic solar panels deployment on urban heat island and radiative forcing from airborne hyperspectral observations

    Open Access•Jose Luis Pancorbo, Federico Carotenuto et al.•ARTICLE•Sustainable Cities and Society•2026

    Urban areas dominated by low-reflective materials increase solar radiation absorption, altering Earth’s energy balance and rising local temperatures, known as Urban Heat Island (UHI). European policies are promoting large-scale deployment of photovoltaic solar panels (PVSPs) for mitigating GHG emissions, however their impacts on UHI and Earth’s radiative forcing remain insufficiently quantified. This study evaluates these impacts across different…

  • Stomatal response to decreased relative humidity constrains the acceleration of terrestrial evapotranspiration

    Open Access•Mingzhong Xiao, Zhongbo Yu et al.•ARTICLE•Environmental Research Letters•2020

    Terrestrial evapotranspiration (ET) is thermodynamically expected to increase with increasing atmospheric temperature; however, the actual constraints on the intensification of ET remain uncertain due to a lack of direct observations. Based on the FLUXNET2015 Dataset, we found that relative humidity (RH) is a more important driver of ET than temperature. While actual ET decrease at reduced RH, potential ET increases, consistently with the complem…

  • Solar dimming above temperate forests and its impact on local climate

    Open Access•Marin Tudoroiu, Lorenzo Genesio et al.•ARTICLE•Environmental Research Letters•2018

    Vegetation has a substantial impact on the local climate. Land cover changes through afforestation or deforestation can amplify or mitigate climate warming by changes in biophysical and biogeochemical mechanisms. In the montane to subalpine area of the Eastern Alps in Europe, where forests have constantly expanded in the last four decades, data of meteorological stations show a consistent reduction in incoming global radiation for the period 2000…

  • Negative elevation-dependent warming trend in the Eastern Alps

    Open Access•Marin Tudoroiu, Emanuele Eccel et al.•ARTICLE•Environmental Research Letters•2016

    Mountain regions and the important ecosystem services they provide are considered to be very vulnerable to the current warming, and recent studies suggest that high-mountain environments experience more rapid changes in temperature than environments at lower elevations. Here we analysed weather records for the period 1975-2010 from the Eastern Italian Alps that show that warming occurred both at high and low elevations, but it was less pronounced…

No prominent works on this page.

  • Negative elevation-dependent warming trend in the Eastern Alps

    Open Access•Marin Tudoroiu, Emanuele Eccel et al.•ARTICLE•Environmental Research Letters•2016

    Mountain regions and the important ecosystem services they provide are considered to be very vulnerable to the current warming, and recent studies suggest that high-mountain environments experience more rapid changes in temperature than environments at lower elevations. Here we analysed weather records for the period 1975-2010 from the Eastern Italian Alps that show that warming occurred both at high and low elevations, but it was less pronounced…

  • Solar dimming above temperate forests and its impact on local climate

    Open Access•Marin Tudoroiu, Lorenzo Genesio et al.•ARTICLE•Environmental Research Letters•2018

    Vegetation has a substantial impact on the local climate. Land cover changes through afforestation or deforestation can amplify or mitigate climate warming by changes in biophysical and biogeochemical mechanisms. In the montane to subalpine area of the Eastern Alps in Europe, where forests have constantly expanded in the last four decades, data of meteorological stations show a consistent reduction in incoming global radiation for the period 2000…

  • Stomatal response to decreased relative humidity constrains the acceleration of terrestrial evapotranspiration

    Open Access•Mingzhong Xiao, Zhongbo Yu et al.•ARTICLE•Environmental Research Letters•2020

    Terrestrial evapotranspiration (ET) is thermodynamically expected to increase with increasing atmospheric temperature; however, the actual constraints on the intensification of ET remain uncertain due to a lack of direct observations. Based on the FLUXNET2015 Dataset, we found that relative humidity (RH) is a more important driver of ET than temperature. While actual ET decrease at reduced RH, potential ET increases, consistently with the complem…

  • Quantifying the thermal mitigation effects of urban parks under different irrigation scenarios and tree-densities using Envi-met and field measurements

    Open Access•Tommaso Giordano, Fabio Castelli et al.•ARTICLE•Sustainable Cities and Society•2026

  • Impact of photovoltaic solar panels deployment on urban heat island and radiative forcing from airborne hyperspectral observations

    Open Access•Jose Luis Pancorbo, Federico Carotenuto et al.•ARTICLE•Sustainable Cities and Society•2026

    Urban areas dominated by low-reflective materials increase solar radiation absorption, altering Earth’s energy balance and rising local temperatures, known as Urban Heat Island (UHI). European policies are promoting large-scale deployment of photovoltaic solar panels (PVSPs) for mitigating GHG emissions, however their impacts on UHI and Earth’s radiative forcing remain insufficiently quantified. This study evaluates these impacts across different…

Climate change (3 works) · Climatology (3 works) · Ecology (3 works) · Environmental Science (3 works) · Geography (3 works) · Geology (3 works) · Plant Water Relations and Carbon Dynamics (3 works) · Atmospheric sciences (2 works) · Ecosystem (2 works) · Humidity (2 works)

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