...
首页> 外文期刊>Annals of Glaciology >Accumulation variability aod mass budgets of the Lambert Glacier-Amery Ice Shelf system, East Antarctica, at high elevations
【24h】

Accumulation variability aod mass budgets of the Lambert Glacier-Amery Ice Shelf system, East Antarctica, at high elevations

机译:南极东部兰伯特冰川-阿梅里冰架系统在高海拔地区的累积变化和大量预算

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The temporal and spatial variability of the annual accumulation rate and the mass budgets of five sub-basins of the Lambert Glacier-Amery Ice Shelf system (LAS), East Antarctica, at high elevations are assessed using a variety of datasets derived from field measurements and modeling. The annual temporal variations of the accumulation rate for four cores from the west and east sides of the LAS are around ±34%. Decadal fluctuation of the accumulation from the DT001 firn core drops to ±10%, and the 30year fluctuation to ±5%, which is assumed to contain the information about the regional and long-term trend in accumulation. The 15-point running mean of the annual accumulation rate derived from stake measurements can remove most of the high-frequency spatial variation so as to better represent the local accumulation. Model simulations show that the spatial variability of erosion/ deposition of snow by the wind has a noticeable impact on the surface mass balance at the higher parts of the LAS. Mass-budget estimates at high-elevation sub-basins of the LAS suggest drainage 9 has a negative imbalance of-0.7 ±0.4 Gt a-1, Lambert and Mellor Glaciers have a positive imbalance of 3.9 ±2.1 and 2.1±2.4Gta-1 respectively, and Fisher Glacier and drainage 11 are approximately in balance. The higher-elevation region as a whole has a positive mass imbalance of 4.4 ± 6.3 Gt a-1, which is consistent with the most recent radar altimetry assessment that shows an overall thickening over this region.
机译:南极东部兰伯特冰川-阿梅里冰架系统(LAS)的五个子流域在高海拔地区的年累积速率和大量预算的时空变化使用来自野外观测和观测的各种数据集进行了评估。造型。 LAS西侧和东侧四个岩心的成藏率的年时变化约为±34%。 DT001堆芯的堆积的年代际波动下降到±10%,而30年的波动下降到±5%,这被认为包含了区域和长期累积趋势的信息。通过桩值测量得出的年累积速率的15点运行平均值可以消除大部分高频空间变化,从而更好地表示局部累积。模型模拟表明,风侵蚀/积雪的空间变异性对LAS较高部分的表面质量平衡有显着影响。 LAS高海拔子盆地的预算估计表明,排水9的负失衡为-0.7±0.4 Gt a-1,Lambert和Mellor冰川的正失衡为3.9±2.1和2.1±2.4Gta-1分别与费舍尔冰川和排水系统11保持平衡。总体上,高海拔区域的质量失衡为4.4±6.3 Gt a-1,这与最近的雷达测高评估一致,该评估表明该区域的整体增厚。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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