로스해 대륙붕 수온의 역전과 2010년대 중반 이후 남극 해빙의 지속적인 감소와의 연관성
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Title
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로스해 대륙붕 수온의 역전과 2010년대 중반 이후 남극 해빙의 지속적인 감소와의 연관성
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Other Titles
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Reversal of Ross Sea shelf water freshening is linked to a persistent decline in Antarctic sea ice since the mid-2010s
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Authors
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Kim, Taekyun
Choo, Sung-Ho
Moon, Jae-Hong
Jin, Emilia Kyung
Kim, Daehyuk
Cha, Hyeonsoo
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Keywords
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Antarctic sea ice decline; Ross Sea; asymmetric wind response; dense shelf water; polynya expansion; salinity rebound
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Issue Date
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2025-10
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Citation
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Kim, Taekyun, et al. 2025. "로스해 대륙붕 수온의 역전과 2010년대 중반 이후 남극 해빙의 지속적인 감소와의 연관성". Environmental Research Letters, 20(11): 0-0.
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Abstract
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Since the mid-2010s, a sharp rebound in dense shelf water (DSW) salinity has been observed in the
Ross Sea, coinciding with a persistent decline in sea ice around Antarctica. Despite extensive scientific
study and significant attention given to these two phenomena due to their potential influence
on Earth’s changing climate, a physical link between them has yet to be established. Here, by
examining atmospheric circulation in response to shifts in major climate variability modes before
and after these dramatic changes, we showed that a combination of large-scale circulation patterns
drove both the decline in Antarctic sea ice and the increase in Ross Sea DSW salinity. After the
mid-2010s, climate-driven atmospheric circulation generated anomalous northerly winds across
much of the high-latitude Southern Ocean. However, the Ross Sea sector uniquely experienced
strengthened southerly flow of cold continental air. Consequently, this process led to enhanced
sea ice loss around Antarctica through warmer air advection from the north, yet simultaneously,
expanded the Ross Sea polynyas, enhancing sea ice formation and contributing to increased Ross
Sea DSW salinity. Our findings, therefore, establish a robust linkage between these two Southern
Ocean transitions, highlighting their interdependence driven by large-scale climate modes.
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URI
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https://repository.kopri.re.kr/handle/201206/16598
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DOI
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http://dx.doi.org/10.1088/1748-9326/ae0f3f
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Type
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Article
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Station
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Araon
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Indexed
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SCIE
- Appears in Collections
- 2025-2025, 남극해 급격한 온난화 대응 남극 해빙 예측 기술 개발 (25-25) / 진경 (PM25010)
2025-2025, 급격한 남극 빙상 용융에 따른 근미래 전지구 해수면 상승 예측기술 개발 (25-25) / 이원상 (PM25020)
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