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First results of the polar regional climate model RACMO2.4.
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- Cryosphere, 2024, v. 18, n. 9, p. 4065, doi. 10.5194/tc-18-4065-2024
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- Article
The 2018 west-central European drought projected in a warmer climate: how much drier can it get?
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- Natural Hazards & Earth System Sciences, 2023, v. 23, n. 5, p. 1921, doi. 10.5194/nhess-23-1921-2023
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- Article
KNMI'23 Climate Scenarios for the Netherlands: Storyline Scenarios of Regional Climate Change.
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- Earth's Future, 2024, v. 12, n. 2, p. 1, doi. 10.1029/2023EF003983
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- Article
Excessive rainfall over the Belgian Ardennes in December 1993: Evaluation of model predictions.
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- Meteorological Applications, 1995, v. 2, n. 1, p. 39, doi. 10.1002/met.5060020107
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- Article
Soil Control on Runoff Response to Climate Change in Regional Climate Model Simulations.
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- Journal of Climate, 2005, v. 18, n. 17, p. 3536, doi. 10.1175/JCLI3471.1
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- Article
Temperature Sensitivity of the Antarctic Surface Mass Balance in a Regional Atmospheric Climate Model.
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- Journal of Climate, 2002, v. 15, n. 19, p. 2758, doi. 10.1175/1520-0442(2002)015<2758:TSOTAS>2.0.CO;2
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- Article
What is the Surface Mass Balance of Antarctica? An Intercomparison of Regional Climate Model Estimates.
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- Cryosphere Discussions, 2020, p. 1, doi. 10.5194/tc-2019-333
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- Article
The added value of high resolution in estimating the surface mass balance in southern Greenland.
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- Cryosphere Discussions, 2020, p. 1, doi. 10.5194/tc-2019-256
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- Article
The added value of high resolution in estimating the surface mass balance in southern Greenland.
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- Cryosphere Discussions, 2019, p. 1, doi. 10.5194/tc-2019-256
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- Article
Modelling the climate and surface mass balance of polar ice sheets using RACMO2, part 2: Antarctica (1979-2016).
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- Cryosphere Discussions, 2017, p. 1, doi. 10.5194/tc-2017-202
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Modelling the climate and surface mass balance of polar ice sheets using RACMO2, Part 1: Greenland (1958-2016).
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- Cryosphere Discussions, 2017, p. 1, doi. 10.5194/tc-2017-201
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- Article
What is the surface mass balance of Antarctica? An intercomparison of regional climate model estimates.
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- Cryosphere, 2021, v. 15, n. 8, p. 3751, doi. 10.5194/tc-15-3751-2021
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- Article
The added value of high resolution in estimating the surface mass balance in southern Greenland.
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- Cryosphere, 2020, v. 14, n. 6, p. 1809, doi. 10.5194/tc-14-1809-2020
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- Article
Modelling the climate and surface mass balance of polar ice sheets using RACMO2 - Part 2: Antarctica (1979-2016).
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- Cryosphere, 2018, v. 12, n. 4, p. 1479, doi. 10.5194/tc-12-1479-2018
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- Article
Modelling the climate and surface mass balance of polar ice sheets using RACMO2 - Part 1: Greenland (1958-2016).
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- Cryosphere, 2018, v. 12, n. 3, p. 811, doi. 10.5194/tc-12-811-2018
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- Article
On the recent contribution of the Greenland ice sheet to sea level change.
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- Cryosphere, 2016, v. 10, n. 5, p. 1933, doi. 10.5194/tc-10-1933-2016
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- Article
Circulation statistics and climate change in Central Europe: PRUDENCE simulations and observations.
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- Climatic Change, 2007, v. 81, p. 179, doi. 10.1007/s10584-006-9212-5
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- Article
Divergent trajectories of Antarctic surface melt under two twenty-first-century climate scenarios.
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- Nature Geoscience, 2015, v. 8, n. 12, p. 927, doi. 10.1038/ngeo2563
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Attribution of Wintertime Anticyclonic Stagnation Contributing to Air Pollution in Western Europe.
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- Bulletin of the American Meteorological Society, 2018, v. 99, n. 1, p. S70, doi. 10.1175/BAMS-D-17-0113.1
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Weather Forecasting Using GPU-Based Large-Eddy Simulations.
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- Bulletin of the American Meteorological Society, 2015, v. 96, n. 5, p. 715, doi. 10.1175/BAMS-D-14-00114.1
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- Article
Human influence on European winter wind storms such as those of January 2018.
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- Earth System Dynamics Discussions, 2018, p. 1, doi. 10.5194/esd-2018-57
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European climate change at global mean temperature increases of 1.5 and 2°C above pre-industrial conditions as simulated by the EURO-CORDEX regional climate models.
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- Earth System Dynamics Discussions, 2017, p. 1, doi. 10.5194/esd-2017-104
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- Article
Human influence on European winter wind storms such as those of January 2018.
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- Earth System Dynamics, 2019, v. 10, n. 2, p. 271, doi. 10.5194/esd-10-271-2019
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- Article
European climate change at global mean temperature increases of 1.5 and 2 °C above pre-industrial conditions as simulated by the EURO-CORDEX regional climate models.
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- Earth System Dynamics, 2018, v. 9, n. 2, p. 459, doi. 10.5194/esd-9-459-2018
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- Article
HCLIM38: A flexible regional climate model applicable for different climate zones from coarse to convection permitting scales.
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- Geoscientific Model Development Discussions, 2019, p. 1, doi. 10.5194/gmd-2019-151
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The Cloud_cci simulator for the ESA Cloud_cci climate data record and its application to a global and a regional climate model.
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- Geoscientific Model Development Discussions, 2018, p. 1, doi. 10.5194/gmd-2018-212
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- Article
Curriculum Vitae of the LOTOS-EUROS (v2.0) chemistry transport model.
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- Geoscientific Model Development Discussions, 2017, p. 1, doi. 10.5194/gmd-2017-88
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- Article
Extreme storm surge modelling in the North Sea.
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- Ocean Dynamics, 2018, v. 68, n. 2, p. 255, doi. 10.1007/s10236-018-1133-0
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- Article
Future Changes in European Severe Convection Environments in a Regional Climate Model Ensemble.
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- Journal of Climate, 2017, v. 30, n. 17, p. 6771, doi. 10.1175/JCLI-D-16-0777.1
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- Article
Temperature and Wind Climate of the Antarctic Peninsula as Simulated by a High-Resolution Regional Atmospheric Climate Model.
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- Journal of Climate, 2015, v. 28, n. 18, p. 7306, doi. 10.1175/JCLI-D-15-0060.1
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- Article
CORRIGENDUM.
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- Journal of Climate, 2014, v. 27, n. 23, p. 8979, doi. 10.1175/JCLI-D-14-00660.1
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- Article
Extreme Precipitation and Climate Gradients in Patagonia Revealed by High-Resolution Regional Atmospheric Climate Modeling.
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- Journal of Climate, 2014, v. 27, n. 12, p. 4607, doi. 10.1175/JCLI-D-13-00579.1
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Precipitation Climatology in an Ensemble of CORDEX-Africa Regional Climate Simulations.
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- Journal of Climate, 2012, v. 25, n. 18, p. 6057, doi. 10.1175/JCLI-D-11-00375.1
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Evaluation of Model-Predicted Top-of-Atmosphere Radiation and Cloud Parameters over Africa with Observations from GERB and SEVIRI.
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- Journal of Climate, 2011, v. 24, n. 15, p. 4015, doi. 10.1175/2011JCLI3856.1
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The impact of climate change on photovoltaic power generation in Europe.
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- Nature Communications, 2015, v. 6, n. 12, p. 10014, doi. 10.1038/ncomms10014
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Evaluation of a Regional Atmospheric Model Using Measurements of Surface Heat Exchange Processes from a Site in Antarctica.
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- Monthly Weather Review, 1999, v. 127, n. 9, p. 1, doi. 10.1175/1520-0493(1999)127<1994:EOARAM>2.0.CO;2
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- Article
Higher surface mass balance of the Greenland ice sheet revealed by high-resolution climate modeling.
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- Geophysical Research Letters, 2009, v. 36, n. 12, p. n/a, doi. 10.1029/2009GL038110
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- Article
Snowfall in coastal West Antarctica much greater than previously assumed.
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- Geophysical Research Letters, 2006, v. 33, n. 2, p. n/a, doi. 10.1029/2005GL025239
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- Article
The spatial and temporal variability of the surface mass balance in Antarctica: results from a regional atmospheric climate model.
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- International Journal of Climatology, 2002, v. 22, n. 10, p. 1197, doi. 10.1002/joc.798
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- Article
Application of a large climate model ensemble to study compound flood events: four case studies for regional water systems in the Netherlands.
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- Geophysical Research Abstracts, 2019, v. 21, p. 1
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- Article
Hydro-meteorological changes in European catchments: scale-dependency of the forced climate response and natural variability.
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- Geophysical Research Abstracts, 2018, v. 20, p. 7952
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The required model resolution for resolving the SMB of the Greenland Ice Sheet.
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- Geophysical Research Abstracts, 2018, v. 20, p. 1394
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- Article
High variability of climate and surface mass balance induced by Antarctic ice rises.
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- Journal of Glaciology, 2014, v. 60, n. 224, p. 1101, doi. 10.3189/2014JoG14J040
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A perfect model study on the reliability of the added small-scale information in regional climate change projections.
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- Climate Dynamics, 2023, v. 60, n. 9/10, p. 2563, doi. 10.1007/s00382-022-06451-6
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- Article
Quantifying the role of the large-scale circulation on European summer precipitation change.
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- Climate Dynamics, 2022, v. 59, n. 9/10, p. 2871, doi. 10.1007/s00382-022-06250-z
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Investigating the impact of soil moisture on European summer climate in ensemble numerical experiments.
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- Climate Dynamics, 2019, v. 52, n. 7/8, p. 4011, doi. 10.1007/s00382-018-4358-1
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- Article
Simulation of medicanes over the Mediterranean Sea in a regional climate model ensemble: impact of ocean-atmosphere coupling and increased resolution.
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- Climate Dynamics, 2018, v. 51, n. 3, p. 1041, doi. 10.1007/s00382-016-3456-1
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Local-scale changes in mean and heavy precipitation in Western Europe, climate change or internal variability?
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- Climate Dynamics, 2018, v. 50, n. 11/12, p. 4745, doi. 10.1007/s00382-017-3901-9
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- Article
Transitions in the wintertime near‐surface temperature inversion at Dome C, Antarctica.
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- Quarterly Journal of the Royal Meteorological Society, 2019, v. 145, n. 720, p. 930, doi. 10.1002/qj.3450
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A GCSS Boundary-Layer Cloud Model Intercomparison Study Of The First Astex Lagrangian Experiment.
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- Boundary-Layer Meteorology, 1999, v. 93, n. 3, p. 341, doi. 10.1023/A:1002005429969
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- Article