Imprints of sea ice, wind patterns, and atmospheric systems on summer water isotope signatures at Hercules Neve, East Antarctica
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Title
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Imprints of sea ice, wind patterns, and atmospheric systems on summer water isotope signatures at Hercules Neve, East Antarctica
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Other Titles
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동남극 헤라클레스 네베 빙하코어의 여름철 물 동위원소 신호에 나타난 해빙, 바람 패턴, 대기 시스템의 흔적
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Authors
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Kim, Songyi
Han, Yeongcheol
Chung, Ji Woong
Ro, Seokhyun
Moon, Jangil
Hur, Soon Do
Lee, Jeonghoon
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Keywords
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로스해; 물 안정 동위원소; 빙하코어; 아문젠해 저기압; 해빙
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Issue Date
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2025-04
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Citation
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Kim, Songyi, et al. 2025. "Imprints of sea ice, wind patterns, and atmospheric systems on summer water isotope signatures at Hercules Neve, East Antarctica". Cryosphere, 0(0): 0-0.
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Abstract
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This study investigated the influence of summer climate variability on water isotopes (δ18O, δ2H, and deuterium excess[dexc]) in a Hercules Neve ice core from Antarctica. High-resolution ERA5 reanalysis data for the austral summer (DJF, 1979?2015) were used to assess the relative contributions of temperature, precipitation, wind patterns (v- and u-winds), ocean condition (sea ice concentration [SIC] and sea surface temperature [SST]), and largescale circulation system (Amundsen Sea Low [ASL] and Zonal Wave-3 [ZW3]) to isotopic variability. The results show that higher temperatures and precipitation coincide with isotopically enriched δ18O, confirming their combined role in controlling isotopic enrichment. Wind patterns also contribute meaningfully but in a more complex way: enhanced southerly winds (positive v-wind anomalies) tend to increase δ18O by transporting relatively warm, moisture-rich air from lower latitudes, whereas stronger westerly winds (positive u-wind anomalies) are associated with more depleted isotopic values, likely reflecting colder or more distant moisture sources. Additionally, the dexc exhibits a positive correlation with SIC and negative correlations with SST, providing valuable insights into moisture source processes in the study region during austral summer. Variations in the ASL and ZW3 further modulate heat and moisture transport, reinforcing their role as key atmospheric drivers of isotopic variability. Taken together, these findings suggest that the summer isotope record at Hercules Neve reflects not only local temperature changes but also the broader imprint of ocean?atmosphere interactions, including sea-ice variability and large-scale circulation patterns. This study highlights the potential of coastal Antarctic ice cores to provide improved constraints on coupled climate processes and to refine paleoclimate reconstructions for the Ross Sea region.
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URI
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https://repository.kopri.re.kr/handle/201206/16547
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Type
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Article
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Station
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Jang Bogo Station
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Indexed
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SCIE
- Appears in Collections
- 2025-2025, 국제심부빙하시추 네트워크를 활용한 대기-빙상 상호작용의 자연적·인위적 특성 규명 (25-25) / 한영철 (PE25100)
2023-2023, Korea Network for Observation and prediction of ice sheet and sea level changes in a Warming world (K-NOW) (23-23) / Lee, Won Sang (PM23020)
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