...
首页> 外文期刊>The Cryosphere Discussions >Stable water isotopes and accumulation rates in the Union Glacier region, Ellsworth Mountains, West Antarctica, over the last 35 years
【24h】

Stable water isotopes and accumulation rates in the Union Glacier region, Ellsworth Mountains, West Antarctica, over the last 35 years

机译:在过去的35年里,联盟冰川地区,埃尔斯沃思山脉,埃尔斯沃思山脉的稳定水同位素和积累率

获取原文
           

摘要

Antarctica?is well known to be highly susceptible to atmospheric and oceanic warming. However, due to the lack of long-term and in situ meteorological observations, little is known about the magnitude of the warming and the meteorological conditions in the intersection region between the Antarctic Peninsula (AP), the West Antarctic Ice Sheet (WAIS) and the East Antarctic Ice Sheet (EAIS). Here we present new stable water isotope data (δ18O, δD, d?excess) and accumulation rates from firn cores in the Union Glacier (UG) region, located in the Ellsworth Mountains at the northern edge of the WAIS. The firn core stable oxygen isotopes and the d?excess exhibit no statistically significant trend for the period 1980–2014, suggesting that regional changes in near-surface air temperature and moisture source variability have been small during the last 35?years. Backward trajectory modelling revealed the Weddell Sea sector, Coats Land and Dronning Maud Land (DML) to be the main moisture source regions for the study site throughout the year. We found that mean annual δ18O (δD) values in the UG region are negatively correlated with sea ice concentrations (SICs) in the northern Weddell Sea but not influenced by large-scale modes of climate variability such as the Southern Annular Mode (SAM) and the El Ni?o–Southern Oscillation (ENSO). Only mean annual d-excess values show a weak positive correlation with the?SAM. On average annual snow accumulation in the UG region amounts to 0.245mw.e.a?1 in 1980–2014 and has slightly decreased during this period. It is only weakly related to sea ice conditions in the Weddell Sea sector and not correlated with SAM and?ENSO. We conclude that neither the rapid warming nor the large increases in snow accumulation observed on the AP and in West Antarctica during the last decades have extended inland to the Ellsworth Mountains. Hence, the UG region, although located at the northern edge of the WAIS and relatively close to the AP, exhibits rather stable climate characteristics similar to those observed in East Antarctica.
机译:南极洲?众所周知,高度易受大气和海洋变暖的影响。然而,由于缺乏长期和原位的气象观测,关于南极半岛(AP),西南极冰盖(WAIS)和南极冰盖(WAIS)和南极冰盖(WAIS)和南极冰盖(WAIS)之间的变暖和气象条件的大小几乎熟知。东南极冰盖(EAIS)。在这里,我们呈现新的稳定水同位素数据(Δ18O,Δd,d?多余的)和累积速率,来自联合冰川(UG)地区的Firn核心,位于Wais北边的Ellsworth山脉。 FIRN核心稳定的氧同位素和D?过度表现出在1980 - 2014年期间没有统计上显着的趋势,这表明在过去的35年期间,近表面空气温度和湿度变化的区域变化很小。落后轨迹建模揭示了Weddell海洋部门,涂层土地和Dronning Maud Land(DML)全年是研究现场的主要湿度源区。我们发现,UG区域中的平均年Δ18O(ΔD)值与北韦德尔大海的海冰浓度(SICS)负相关,但不受南部环形模式(SAM)和南部环形模式(SAM)的大规模模式的大规模模式的影响El Ni?O-Southern振荡(ENSO)。只有均值的D-Super多余值显示出与山姆的弱正相关。在UG地区的平均年度积雪中,1980 - 2014年的每年累积为0.245mW.e.a?1,在此期间略有下降。它只与Weddell Sea Sector中的海冰条件略微相关,而不与Sam和enso相关。我们得出结论,在过去几十年中,在AP和西南极洲观察到的积雪积累的快速变暖和大幅增加延伸到内陆到Ellsworth山脉。因此,UG区域虽然位于WAIS的北部边缘并且相对靠近AP,但与在东南极洲观察到的那些相似的气候特征表现出相当稳定的气候特征。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号