Reference:Reference-014840: Difference between revisions

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|PublicationClusterID=0
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|MS_PublicationClusterID=3162070449
|MS_PublicationClusterID=3162070449
|Semantic_ID=09a36ff27e240869edeba671402fd7f469ecbae9
|Semantic_ID=09a36ff27e240869edeba671402fd7f469ecbae9 |CorpusID=236409104
|CorpusID=236409104
|PublicationWhatKindOf=a module application description
|PublicationWhatKindOf=a module application description
|PublicationNrofModels=a single module
|PublicationNrofModels=a single module

Latest revision as of 11:56, 8 October 2024



Author(s) Herrmann, Maximilian; Sihler, Holger; Frieß, Udo; Wagner, Thomas; Platt, Ulrich; Gutheil, Eva;
BibType journalArticle
Title Time-dependent 3D simulations of tropospheric ozone depletion events in the Arctic spring using the Weather Research and Forecasting model coupled with Chemistry (WRF-Chem)
Editors
Year 2021-05-20
Journal Atmospheric Chemistry and Physics
Booktitle
Volume 21
Pages 7611–7638
URL https://acp.copernicus.org/articles/21/7611/2021/
DOI 10.5194/acp-21-7611-2021
ISBN
Note Auto downloaded ref at: 2021-07-03


 
Feature reference No
PublicationClusterID 0
MS_PublicationClusterID 3162070449
Semantic_ID 09a36ff27e240869edeba671402fd7f469ecbae9
Nr of citations 14
Sort of publication a module application description
Sort of model publication a single module
Is the CSDMS HPC used No
If HPC is used, for what project was it?:
Associated simulation movie if any:


Model(s) discussed: WRF