OceanRep
The Climatological Impacts of Continental Surface Evaporation, Rainout, and Subcloud Processes on δ D of Water Vapor and Precipitation in Europe.
Christner, Emanuel, Aemisegger, Franziska, Pfahl, Stephan, Werner, Martin, Cauquoin, Alexandre, Schneider, Matthias, Hase, Frank, Barthlott, Sabine and Schädler, Gerd (2018) The Climatological Impacts of Continental Surface Evaporation, Rainout, and Subcloud Processes on δ D of Water Vapor and Precipitation in Europe. Journal of Geophysical Research: Atmospheres, 123 (8). pp. 4390-4409. DOI 10.1002/2017JD027260.
Preview |
Text
Christner_et_a_2018.pdf - Published Version Download (3MB) | Preview |
Preview |
Text
Christner_et_a_2018_Suppl.pdf - Supplemental Material Download (128kB) | Preview |
Abstract
All types of applications of stable water isotopes, for example, for the reconstruction of paleotemperatures or for climate model validation, rely on a proper understanding of the mechanisms determining the isotopic composition of water vapor and precipitation. In this study, we use the isotope‐enabled limited‐area model COSMOiso to characterize the impacts of continental evapotranspiration, rainout, and subcloud processes on δD of European water vapor and precipitation. To this end, we first confirm a reliable implementation of the most important isotope fractionation processes in COSMOiso by comparing 5 years of modeled δD values with multiplatform δD observations from Europe (remote sensing observations of the δD of water vapor around 2.6 km above ground level, in situ δD measurements in near‐surface water vapor, and δD precipitation data from the Global Network of Isotopes in Precipitation). Based on six 15 year sensitivity simulations, we then quantify the climatological impacts of the different fractionation processes on the δD values. We find δD of European water vapor and precipitation to be most strongly controlled by rainout. Superimposed to this are the effect of subcloud processes, which especially affects δD in precipitation under warm conditions, and the effect of continental evapotranspiration, which exerts an important control over the δD of near‐surface water vapor. In future studies, the validated COSMOiso model can be employed in a similar way for a comprehensive interpretation of European isotope records from climatologically different time periods.
Document Type: | Article |
---|---|
Keywords: | stable isotopes; δD; footprint; Europe; COSMOiso |
Refereed: | Yes |
Open Access Journal?: | No |
Publisher: | AGU (American Geophysical Union), Wiley |
Related URLs: | |
Projects: | PalMod |
Date Deposited: | 03 Sep 2018 12:00 |
Last Modified: | 09 Mar 2022 10:46 |
URI: | https://oceanrep.geomar.de/id/eprint/44129 |
Actions (login required)
View Item |
Copyright 2023 | GEOMAR Helmholtz-Zentrum für Ozeanforschung Kiel | All rights reserved
Questions, comments and suggestions regarding the GEOMAR repository are welcomed
at bibliotheksleitung@geomar.de !