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10 results for “EMEP”
data postprocessing for the EMEP local city source contribution
<p>- First edition by A. Valdebenito (Norwegian Meteorological Institute)</p> <p>similar codes were used in the country source contribution calculations: https://doi.org/10.5194/gmd-13-1787-2020</p> <p>-updated for the analysis and the publication by M. Pommier</p> <p> </p>
Data for evaluation of modelled versus observed NMVOC compounds at EMEP sites in Europe
<p>Data (model outputs, emission files, python scripts) for the publication of "<span>Evaluation of modelled versus observed NMVOC compounds at </span><span>EMEP sites in Europe".</span></p>
EMEP rv5.3 trend runs with CAMS-REG emissions
<h2>EMEP MSC-W results for ecosystem deposition<br><br></h2> <p>Provided by : david.simpson@met.no</p> <p>Date: : June 2024</p> <p>Model version: rv5.3 (git v5.3-7-g227eeda4)</p> <p> - see Simpson et al (2012,2024, and refs therein).</p> <p>Reslution : 0.1x0.1 degree resolution, CAMS domain, 20 layers.</p> <p>Aim: delivered to EU AVENGERS project</p> <h3>Runs performed:<br><br></h3> <p> tot: Default run with all emissions</p> <p> noKL: Run with no GNFR K+L emissions</p> <p> (2018 only:)</p> <p> noKLf: as noKL but also without fertilizer-induced soil NO emssions (just to allow an estimate of this impact).</p> <p> </p> <p>See README_Jun2024.txt for further details of emissions, caveats, etc.</p>
Datafiles supporting the article: Impact of methane and other precursor emission reductions on surface ozone in Europe: Scenario analysis using the EMEP MSC-W model
<p>This repository contains the input and output files of the EMEP model related to the article "Impact of methane and other precursor emission reductions on surface ozone in Europe: Scenario analysis using the EMEP MSC-W model" submitted to ACP.</p> <p>The folder Python_scripts includes the .py files used to generate the MAGICC7 model input files and simulation results, as well as the files used to create the figures in both the manuscript and supplementary information. For users, the paths in these scripts will have to be adjusted to point to the data files included in the EMEP_output folder. The latter folder contains the 5-year average scenario simulations as discussed in the main body of the text, as well as the ozone sensitivity to methane concentrations.</p> <p>The EMEP_input folder contains the IIASA scenario emission files for the baseline, 2050 CLE, 2050 MFR, and 2050 LOW scenarios, including separate international shipping files. The regional 0.1 by 0.1 degree emission files are a combination of IIASA files for EECCA countries and EMEP reported emissions scaled by the included 'femis' files. The EMEP model code and reported emissions are available from the open-source release, available here: https://zenodo.org/record/8431553.</p>
Phyto-toxic ozone dose (POD3IAM) calculations from EMEP MSC-W model rv4.16, 2008-2012
<p>A global (1x1 degree) set of daily POD3 calculations for irrigated and non-irrigated wheat, produced with the EMEP MSC-W chemical transport model v4.16 (Simpson et al., 2012,2018, and refs therein). Data used for studies of crop damage:</p> <ul> <li>Mills G, Sharps K, Simpson D, et al. Ozone pollution will compromise efforts to increase global wheat production. Glob. Change Biol. 2018a;24:3560–3574. https://doi.org/10.1111/gcb.14157 (note: this paper used an earlier model version though, v4.8)</li> <li>Mills G, Sharps K, Simpson D, et al. Closing the global ozone yield gap: Quantification and cobenefits for multistress tolerance. Glob. Change Biol. 2018b;24:4869–4893. https://doi.org/10.1111/gcb.14381 (this paper used v4.16)</li> </ul> <p>See Mills et al (2018a) for model setup and evaluation. EMEP model documentation can be found in:</p> <ul> <li>Simpson, D., Benedictow, A., Berge, H., Bergström, R., Emberson, L. D., Fagerli, H., ... Wind, P. (2012). The EMEP MSC‐W chemical transport model -- technical description. Atmos. Chem. Phys., 12, 7825–7865. https://doi.org/10.5194/acp-12-7825-2012</li> <li>Simpson, D., Wind, P., Bergström, R., Gauss, M., Tsyro, S. and Valdebenito, A, Updates to the EMEP/MSC-W model, 2017--2018, In: Transboundary particulate matter, photo-oxidants, acidifying and eutrophying components. EMEP Status Report 1/2018, 109-116, Norwegian Meteorological Institute, available from www.emep.int, 2018</li> </ul> <p>See www.emep.int for further information on the EMEP MSC-W model.</p>
Dataset in support of the article: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e
<p>This dataset contains the measurement data, model outputs and Python (v3.10) scripts that are used to produce figures and tables in the paper: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e.</p> <p>The newly created module providing the interface with Cloud-J in the EMEP MSC-W and BoxChem models is called "CloudJ_mod.f90." The modules from the Cloud-J code itself are gathered in the "ModsCloudJ_mod.f90" file.</p> <p>The measurement data and supporting MATLAB scripts used to create the ATom-1 data files read in by the Python scripts can be downloaded from https://doi.org/10.3334/ORNLDAAC/1651</p>
Dataset supporting the article: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e
<p>This dataset contains the measurement data, model outputs and Python (v3.10) scripts that are used to produce figures and tables in the paper: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e.</p> <p>The newly created module providing the interface with Cloud-J in the EMEP MSC-W and BoxChem models is called "CloudJ_mod.f90." The modules from the Cloud-J code itself are gathered in the "ModsCloudJ_mod.f90" file in the CloudJ sub-folders.</p> <p>The measurement data and supporting MATLAB scripts used to create the ATom-1 data files read in by the Python scripts can be downloaded from https://doi.org/10.3334/ORNLDAAC/1651</p>
Data repository in support of the article: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e
<p>This dataset contains the measurement data, model outputs and Python (v3.10) scripts that are used to produce figures and tables in the paper: Implementation and evaluation of updated photolysis rates in the EMEP MSC-W chemical transport model using Cloud-J v7.3e.</p> <p>The newly created modules providing the interface with Cloud-J in the EMEP MSC-W and BoxChem models are called CloudJ_mod.f90.</p> <p>The measurement data and supporting MATLAB scripts used to create the ATom-1 data files read in by the Python scripts provided here, can be downloaded from https://doi.org/10.3334/ORNLDAAC/1651</p> <p> </p>
EMEPIC : Value of a Mobile Team of Cardiologist Using Echocardiography for Managing Patients With Acute Heart Failure
ClinicalTrials.gov study NCT00568165. IPD Sharing: Not stated. Countries: 1. Publications: 0.
NAEI 2016 UK Emission Data, formatted for the EMEP CTM model.
<p>National Atmospheric Emissions Inventory (NAEI) emissions data for Ammonia (NH3), Carbon Monoxide (CO), Nitrogen Oxides (NOx), Non methane VOCs (VOC), particulate matter <2.5 um (pm25), and particulate matter <10 um (pmco) for the UK. Inventory year is 2016. Original data available from: https://naei.beis.gov.uk/data/mapping</p> <p>This data is in netcdf format, and has been formatted for use with the EMEP air quality model (v4.33 onwards, downloadable from https://github.com/metno/emep-ctm ). The dataset consists of the (1km x 1km) gridded NAEI area sources, for each of the 11 emission sectors (agric, domcom, energyprod, indcom, indproc, nature, offshore, othertrans, roadtrans, solvents, and waste). NAEI point sources have been added to these emissions, allocated to the grid cell in which these sources occur. It is recommended that the user consults the processing scripts for details of this apportionment. The datasets also contain total area source emissions (totarea), and total area plus point source emissions (total), for illustration of the point source contributions.</p> <p>The python scripts used to create this datafiles are available in the 'NAEI_EMEP_Python_Script' directory of this repository: https://zenodo.org/record/3996688#.X0OYQkl7nUJ</p> <p>© Crown 2020 copyright Defra & BEIS via naei.beis.gov.uk, licenced under the Open Government Licence (OGL).</p>
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