Borealization of the Arctic Ocean in Response to Anomalous Advection From Sub-Arctic Seas
作者:Igor V. Polyakov, Matthew B. Alkire, Bodil A. Bluhm, Kristina A. Brown, Eddy C. Carmack, Melissa Chierici, Seth L. Danielson, Ingrid Ellingsen, E. A. Ershova, Katarina Gårdfeldt, Randi B. Ingvaldsen, Andrey V. Pnyushkov, Dag Slagstad, Paul Wassmann · 发表于:Frontiers in Marine Science · 年份:2020 · DOI:10.3389/fmars.2020.00491 · 被引用次数:406 · 研究领域:Arctic and Antarctic ice dynamics、Methane Hydrates and Related Phenomena、Geological Studies and Exploration
An important yet still not well documented aspect of recent changes in the Arctic Ocean is associated with the advection of anomalous sub-Arctic Atlantic- and Pacific-origin waters and biota into the polar basins, a process which we refer to as borealization. Using a 37-year archive of observations (1981–2017) we demonstrate dramatically contrasting regional responses to atlantification (that part of borealization related to progression of anomalies from the Atlantic sector of sub-Arctic seas into the Arctic Ocean) and pacification (the counterpart of atlantification associated with influx of anomalous Pacific waters). Particularly, we show strong salinification of the upper Eurasian Basin since 2000, with attendant reductions in stratification, and potentially altered nutrient fluxes and primary production. These changes are closely related to upstream conditions. In contrast, pacification is strongly manifested in the Amerasian Basin by the anomalous influx of Pacific waters, creating conditions favorable for increased heat and freshwater content in the Beaufort Gyre halocline and expansion of Pacific species into the Arctic interior. Here, changes in the upper (overlying) layers are driven by local Arctic atmospheric processes resulting in stronger wind/ice/ocean coupling, increased convergence within the Beaufort Gyre, a thickening of the fresh surface layer, and a deepening of the nutricline and deep chlorophyll maximum. Thus, a divergent (Eurasian Basin) gyre responds a...