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Different Climate Regimes Over the Coastal Regions of the Eastern Antarctic Ice Sheet
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  • Different Climate Regimes Over the Coastal Regions of the Eastern Antarctic Ice Sheet
  • Different Climate Regimes Over the Coastal Regions of the Eastern Antarctic Ice Sheet
저자명
Cunde. Xiao,Dahe. Qin,Zhongqin. Li,Jiawen. Ren,Allison. Ian
간행물명
Ocean and polar research
권/호정보
2002년|24권 3호|pp.227-236 (10 pages)
발행정보
한국해양연구원
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

For ten firn cores, from both the eastern and the western side of Lambert Glacier basin (LGB), snow accumulation rate and isotopic temperature were measured far the recent 50 years. Results show that snow accumulation for five cores over the eastern side of LGB (GC30, GD03, GD15, DT001, and DT085) at Wilks Land and Princess Elizabeth Land increases, whereas it decreases at the western side (Core E, DML05, W200, LGB 16, and MGA) at Dronning Maud Land, Mizuho Plateau and Kamp Land. For the past decades, the increasing rate was $0.34-2.36kg;m^{-2}a^{-1}$ at the eastern side and the decreasing rate was $-0.01;-;-2.36kg;m^{-2};a^{-1}$ at the western side. Temperatures at the eastern LGB were also increased with the rate of $0.02%o;a^{-l}$. At the western LGB it was difficult to see clear trends, which were confirmed by Instrumental temperature records at coastal stations. Although statistic analysis and modeling results display that both surface temperature and accumulation rate has increased trends in Antarctic ice sheet during 1950-2000, the regional distributions were much more different for different geographic areas. We believe that ice-core records at Wilks Land and Princess Elizabeth Land reflect the real variations of SST and moisture change in the southern India Ocean. For the Kamp Land and Dronning Maud Land, however circulation pattern was different, by which the climate was more complicated. The International Trans-Antarctic Scientific Expedition (ITASE) aimed to reveal an overall spatial pattern of climate change over Antarctic ice sheet for the past 200 years. This study points the importance of continental to regional circulation to annual-decadal scale climate change in Antarctica.