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This dataset provides annual air quality reanalyses for Europe based on both unvalidated (interim) and validated observations.

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Surface aerosol parameters from the CAMS global forecasting system. The products are available every hour.

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Surface chemical parameters from the CAMS global forecasting system. The products are available every hour.

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Surface meteorological parameters from the CAMS global forecasting system. The products are available every hour.

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Pressure levels aerosol parameters from the from the CAMS global forecasting system. The products are available every 3 hours.

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Pressure levels chemical parameters from the from the CAMS global forecasting system. The products are available every 3 hours.

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Pressure levels meteorological parameters from the from the CAMS global forecasting system. The products are available every 3 hours.

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Model levels aerosol parameters from the from the CAMS global forecasting system. The products are available every 3 hours. With the implementation of the IFS Cycle 50r1 a subset of model levels forecast fields is available every hourly step.

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Model levels chemical parameters from the from the CAMS global forecasting system. The products are available every 3 hours. With the implementation of the IFS Cycle 50r1 a subset of model levels forecast fields is available every hourly step.

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Model levels meteorological parameters from the from the CAMS global forecasting system. The products are available every 3 hours. With the implementation of the IFS Cycle 50r1 a subset of model levels forecast fields is available every hourly step.

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CAMS produces global forecasts for atmospheric composition twice a day. The forecasts consist of more than 50 chemical species (e.g. ozone, nitrogen dioxide, carbon monoxide) and seven different types of aerosol (desert dust, sea salt, organic matter, black carbon, sulphate, nitrate and ammonium aerosol). In addition, several meteorological variables are available as well.

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Emissions of atmospheric pollutants from biomass burning and vegetation fires are key drivers of the evolution of atmospheric composition, with a high degree of spatial and temporal variability, and an accurate representation of them in models is essential.

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This data set contains gridded distributions of global anthropogenic and natural emissions.

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This dataset is part of the ECMWF Atmospheric Composition Reanalysis focusing on long-lived greenhouse gases: carbon dioxide (CO2) and methane (CH4). The emissions and natural fluxes at the surface are crucial for the evolution of the long-lived greenhouse gases in the atmosphere. In this dataset the CO2 fluxes from terrestrial vegetation are modelled in order to simulate the variability across a wide range of scales from diurnal to inter-annual.

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This dataset is part of the ECMWF Atmospheric Composition Reanalysis focusing on long-lived greenhouse gases: carbon dioxide (CO2) and methane (CH4). The emissions and natural fluxes at the surface are crucial for the evolution of the long-lived greenhouse gases in the atmosphere. In this dataset the CO2 fluxes from terrestrial vegetation are modelled in order to simulate the variability across a wide range of scales from diurnal to inter-annual.

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This data set contains net fluxes at the surface, atmospheric mixing ratios at model levels, and column-mean atmospheric mixing ratios for carbon dioxide (CO2), methane (CH4) and nitrous oxide (N20).

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A routine inter-comparison of wave model forecast verification data was first established in 1995, developed around the exchange of model forecast data at an agreed list of moored buoy sites at which instrumented observations of significant wave height, wave period and wind speed are available over the WMO GTS.

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(Next AIFS version v2) AIFS ENS Meteograms show a probabilistic interpretation of the AIFS ENS forecasts for specific locations using a box and whisker plot. It shows the time evolution of the distribution of several meteorological parameters on a single diagram...

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This product shows ENS meteograms from next model version of IFS cycle 50R1 that is planned to be ...

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**This product shows ENS meteograms from next model version of IFS cycle 50R1 that is planned ...**

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**Next IFS version (cycle 50r1)**. This product shows the probability of visibility (%) in 2 ...

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(Next IFS version - CY50R1) Probability of precipitation type (%) in precipitation rate categories ...

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(New IFS cycle 50R1) The Vertical Profiles display the vertical structure of the forecast model atmosphere in a familiar user friendly way. The vertical structure of temperatures (red) dewpoints (green) and dewpoint depressions (blue) from each ENS member ...

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The DestinE Digital Twin for Climate Change Adaptation (Climate DT) supports adaptation activities by providing innovative climate information on multi-decadal timescales, globally, at scales at which many impacts of climate change are observed. It combines cutting-edge global Earth-system models, impact-sector applications and observations into a unified framework to provide global climate projections and impact-sector information on multi-decadal timescales (1990 to ~2050), at very high spatial resolutions (5 to 10 km).

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The DestinE Digital Twin for Climate Change Adaptation (Climate DT) supports adaptation activities by providing innovative climate information on multi-decadal timescales, globally, at scales at which many impacts of climate change are observed. It combines cutting-edge global Earth-system models, impact-sector applications and observations into a unified framework to provide global climate projections and impact-sector information on multi-decadal timescales (1990 to ~2050), at very high spatial resolutions (5 to 10 km).

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