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Intense zonal freshwater transport in the Eurasian Arctic during ice-covered season revealed by in situ measurements

Scientific Reports 2023 17 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Alexander Osadchiev, Alexander Osadchiev, Alexander Osadchiev, Alexander Osadchiev, Ekaterina Kuskova, Ekaterina Kuskova, Roman Sedakov, Alexandra Gordey, Alexandra Gordey, Alexandra Gordey, Alexander Osadchiev, D. I. Frey, Alexandra Gordey, Alexander Osadchiev, Alexandra Gordey, Alexandra Gordey, Roman Sedakov, Vladimir Rogozhin, Vladimir Rogozhin, Vladimir Rogozhin, Vladimir Rogozhin, Zinaida Zabudkina, Zinaida Zabudkina, Alexander Osadchiev, Eduard Spivak, Ekaterina Kuskova, Alexander Osadchiev, Ekaterina Kuskova, Andrey F. Sazhin, Igor Semiletov Andrey F. Sazhin, Alexander Osadchiev, Igor Semiletov Igor Semiletov Igor Semiletov Igor Semiletov

Summary

Researchers conducted rare in-situ measurements in the Kara Sea and discovered that massive volumes of freshwater from Siberian rivers don't just freeze in place when ice forms — they form a fast-moving underwater current that carries roughly 1,000 cubic kilometers of freshwater eastward into the Laptev Sea over winter. This previously unknown seasonal transport pathway reshapes our understanding of freshwater balance across the Eurasian Arctic.

The Kara Sea receives ~ 1/3 of total freshwater discharge to the Arctic Ocean, mainly from the large Ob and Yenisei rivers. The Ob-Yenisei plume covers wide area in the central part of the Kara Sea during ice-free season (June-October) and accumulates ~ 1000 km<sup>3</sup> of freshwater volume. In late autumn, the Kara Sea becomes covered by ice, which hinders in situ measurements at this area. As a result, the fate of the Ob-Yenisei plume below sea ice during winter and spring remains unclear. In this study, we report multiple in situ measurements performed in the Kara Sea shortly before and during ice-covered season. We demonstrate that late autumn convection in the plume shortly before ice formation significantly reduces friction between the plume and the subjacent sea. The subsequent formation of solid sea ice coverage isolates the plume from wind forcing. These two factors precondition the Ob-Yenisei plume to form an intense buoyancy-driven coastal current below sea ice. As a result, the plume advects eastward to the Laptev Sea through the Vilkitsky Strait during several months in November-February. Eventually, by late winter this huge freshwater volume disappears from the Kara Sea and contributes to freshwater content of the Laptev Sea. The obtained result improves our understanding of freshwater balance of the Kara and Laptev seas, as well as provides an important insight into the large-scale freshwater transport in the Eurasian Arctic, which remain largely unknown during ice-covered season.

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