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Diego G Miralles

Dados Biográficos

ID6350362
NOMEDiego G Miralles
PRENOMESDiego G
SOBRENOMEMiralles
ASSINATURAMIRALLES D G
AFILIAÇÕESGhent University
ORCID0000-0001-6186-5751
VERIFICADOSim
TOTAL DE OBRAS7
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR7
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2014
ANO MAIS RECENTE DE PUBLICAÇÃO2022
ÍNDICE H0
  • Decoupling between ecosystem photosynthesis and transpiration

    Open Access•Christopher Krich, Miguel D Mahecha et al.•ARTICLE•Environmental Research Letters•2022

    Ecosystems are projected to face extreme high temperatures more frequently in the near future. Various biotic coping strategies exist to prevent heat stress. Controlled experiments have recently provided evidence for continued transpiration in woody plants during high air temperatures, even when photosynthesis is inhibited. Such a decoupling of photosynthesis and transpiration would represent an effective strategy (‘known as leaf or canopy coolin…

  • ERA5-Land

    Open Access•Joaquín Muñoz‐Sabater, Emanuel Dutra et al.•ARTICLE•Earth System Science Data•2021

    Framed within the Copernicus Climate Change Service (C3S) of the European Commission, the European Centre for Medium-Range Weather Forecasts (ECMWF) is producing an enhanced global dataset for the land component of the fifth generation of European ReAnalysis (ERA5), hereafter referred to as ERA5-Land. Once completed, the period covered will span from 1950 to the present, with continuous updates to support land monitoring applications. ERA5-Land d…

  • Recent increasing frequency of compound summer drought and heatwaves in Southeast Brazil

    Open Access•João L Geirinhas, Ana Russo et al.•ARTICLE•Environmental Research Letters•2021

    An increase in the frequency of extremely hot and dry events has been experienced over the past few decades in South America, and particularly in Brazil. Regional climate change projections indicate a future aggravation of this trend. However, a comprehensive characterization of drought and heatwave compound events, as well as of the main land–atmosphere mechanisms involved, is still lacking for most of South America. This study aims to fill this…

  • GLEAM v3

    Open Access•Brecht Martens, Diego G Miralles et al.•ARTICLE•Geoscientific Model Development•2017

    The Global Land Evaporation Amsterdam Model (GLEAM) is a set of algorithms dedicated to the estimation of terrestrial evaporation and root-zone soil moisture from satellite data. Ever since its development in 2011, the model has been regularly revised, aiming at the optimal incorporation of new satellite-observed geophysical variables, and improving the representation of physical processes. In this study, the next version of this model (v3) is pr…

  • Vegetation anomalies caused by antecedent precipitation in most of the world

    Open Access•Christina Papagiannopoulou, Diego G Miralles et al.•ARTICLE•Environmental Research Letters•2017

    Quantifying environmental controls on vegetation is critical to predict the net effect of climate change on global ecosystems and the subsequent feedback on climate. Following a non-linear Granger causality framework based on a random forest predictive model, we exploit the current wealth of multi-decadal satellite data records to uncover the main drivers of monthly vegetation variability at the global scale. Results indicate that water availabil…

  • Contribution of water-limited ecoregions to their own supply of rainfall

    Open Access•Diego G Miralles, Raquel Nieto et al.•ARTICLE•Environmental Research Letters•2016

    The occurrence of wet and dry growing seasons in water-limited regions remains poorly understood, partly due to the complex role that these regions play in the genesis of their own rainfall. This limits the predictability of global carbon and water budgets, and hinders the regional management of naturalresources. Using novel satellite observations and atmospheric trajectory modelling, we unravel the origin and immediate drivers of growing-season …

  • Mega-heatwave temperatures due to combined soil desiccation and atmospheric heat accumulation

    Open Access•Diego G Miralles, Adriaan J Teuling et al.•ARTICLE•Nature Geoscience•2014

Sem obras proeminentes nesta página.

  • Mega-heatwave temperatures due to combined soil desiccation and atmospheric heat accumulation

    Open Access•Diego G Miralles, Adriaan J Teuling et al.•ARTICLE•Nature Geoscience•2014

  • Contribution of water-limited ecoregions to their own supply of rainfall

    Open Access•Diego G Miralles, Raquel Nieto et al.•ARTICLE•Environmental Research Letters•2016

    The occurrence of wet and dry growing seasons in water-limited regions remains poorly understood, partly due to the complex role that these regions play in the genesis of their own rainfall. This limits the predictability of global carbon and water budgets, and hinders the regional management of naturalresources. Using novel satellite observations and atmospheric trajectory modelling, we unravel the origin and immediate drivers of growing-season …

  • GLEAM v3

    Open Access•Brecht Martens, Diego G Miralles et al.•ARTICLE•Geoscientific Model Development•2017

    The Global Land Evaporation Amsterdam Model (GLEAM) is a set of algorithms dedicated to the estimation of terrestrial evaporation and root-zone soil moisture from satellite data. Ever since its development in 2011, the model has been regularly revised, aiming at the optimal incorporation of new satellite-observed geophysical variables, and improving the representation of physical processes. In this study, the next version of this model (v3) is pr…

  • Vegetation anomalies caused by antecedent precipitation in most of the world

    Open Access•Christina Papagiannopoulou, Diego G Miralles et al.•ARTICLE•Environmental Research Letters•2017

    Quantifying environmental controls on vegetation is critical to predict the net effect of climate change on global ecosystems and the subsequent feedback on climate. Following a non-linear Granger causality framework based on a random forest predictive model, we exploit the current wealth of multi-decadal satellite data records to uncover the main drivers of monthly vegetation variability at the global scale. Results indicate that water availabil…

  • ERA5-Land

    Open Access•Joaquín Muñoz‐Sabater, Emanuel Dutra et al.•ARTICLE•Earth System Science Data•2021

    Framed within the Copernicus Climate Change Service (C3S) of the European Commission, the European Centre for Medium-Range Weather Forecasts (ECMWF) is producing an enhanced global dataset for the land component of the fifth generation of European ReAnalysis (ERA5), hereafter referred to as ERA5-Land. Once completed, the period covered will span from 1950 to the present, with continuous updates to support land monitoring applications. ERA5-Land d…

  • Recent increasing frequency of compound summer drought and heatwaves in Southeast Brazil

    Open Access•João L Geirinhas, Ana Russo et al.•ARTICLE•Environmental Research Letters•2021

    An increase in the frequency of extremely hot and dry events has been experienced over the past few decades in South America, and particularly in Brazil. Regional climate change projections indicate a future aggravation of this trend. However, a comprehensive characterization of drought and heatwave compound events, as well as of the main land–atmosphere mechanisms involved, is still lacking for most of South America. This study aims to fill this…

  • Decoupling between ecosystem photosynthesis and transpiration

    Open Access•Christopher Krich, Miguel D Mahecha et al.•ARTICLE•Environmental Research Letters•2022

    Ecosystems are projected to face extreme high temperatures more frequently in the near future. Various biotic coping strategies exist to prevent heat stress. Controlled experiments have recently provided evidence for continued transpiration in woody plants during high air temperatures, even when photosynthesis is inhibited. Such a decoupling of photosynthesis and transpiration would represent an effective strategy (‘known as leaf or canopy coolin…

Environmental Science (7 obras) · Geography (6 obras) · Atmospheric sciences (5 obras) · Climate change (5 obras) · Climatology (5 obras) · Meteorology (5 obras) · Plant Water Relations and Carbon Dynamics (5 obras) · Climate variability and models (4 obras) · Ecology (3 obras) · Ecosystem (3 obras)

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