How does sea ice influence δ18O of Arctic precipitation?

Anne-Katrine Faber, Bo Møllesøe Vinther, Jesper Sjolte, Rasmus Anker Pedersen
2017 Atmospheric Chemistry and Physics  
<p><strong>Abstract.</strong> This study investigates how variations in Arctic sea ice and sea surface conditions influence <i>δ</i><sup>18</sup>O of present-day Arctic precipitation. This is done using the model isoCAM3, an isotope-equipped version of the National Center for Atmospheric Research Community Atmosphere Model version 3. Four sensitivity experiments and one control simulation are performed with prescribed sea surface temperature (SST) and sea ice. Each of the four experiments
more » ... r experiments simulates the atmospheric and isotopic response to Arctic oceanic conditions for selected years after the beginning of the satellite era in 1979.<br><br> Changes in sea ice extent and SSTs have different impacts in Greenland and the rest of the Arctic. The simulated changes in central Arctic sea ice do not influence <i>δ</i><sup>18</sup>O of Greenland precipitation, only anomalies of Baffin Bay sea ice. However, this does not exclude the fact that simulations based on other sea ice and sea surface temperature distributions might yield changes in the <i>δ</i><sup>18</sup>O of precipitation in Greenland. For the Arctic, <i>δ</i><sup>18</sup>O of precipitation and water vapour is sensitive to local changes in sea ice and sea surface temperature and the changes in water vapour are surface based. Reduced sea ice extent yields more enriched isotope values, whereas increased sea ice extent yields more depleted isotope values. The distribution of the sea ice and sea surface conditions is found to be essential for the spatial distribution of the simulated changes in <i>δ</i><sup>18</sup>O.</p></p>
doi:10.5194/acp-17-5865-2017 fatcat:a5noiqtcgja3fplbqzrv4unlma