首页> 外文OA文献 >Investigation of Glacial Dynamics in the Lambert Glacier-Amery Ice Shelf System (LAS) Using Remote Sensing
【2h】

Investigation of Glacial Dynamics in the Lambert Glacier-Amery Ice Shelf System (LAS) Using Remote Sensing

机译:兰伯特冰川-冰川冰架系统(LAS)中的冰川动力学的遥感研究

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Numerous recent studies have documented dynamic changes in the behaviors of large marine-terminating outlet glaciers and ice streams in Greenland, the Antarctic Peninsula, and West Antarctica. However, fewer observations of outlet glaciers and ice shelves exist for the East Antarctic Ice Sheet. In addition, most recent surface velocity mappings of the Lambert Glacier-Amery Ice Shelf system (LAS) are derived for the time period of 1997-2000. From this research, surface velocity measurements provide a more extended view of the behavior and stability of the LAS over the past two decades than can be gleaned from a single observational period.This study uses remote sensing to investigate whether significant changes in velocities have occurred from the late 1980?s through the late 2010?s and assesses the magnitude of mass balance changes observed at the grounding line. To accomplish this goal, surface velocities of the LAS from late 1980?s to late 2010?s for three separate time periods are measured. The observed surface velocities of the LAS ranged from 0 to 1300 m yr^-1 during 1988-1990. A slight slowing down is detected in the central Amery Ice Shelf front by analyzing the surface velocity measurements made along the centerlines.The mass balance is the difference between snow accumulation and the outflux of the grounded LAS and is calculated for individual sub-basin during the three time intervals of 1988-1990, 1999-2004, and 2007-2011 to illustrate the mass balance variation under sub-basin level. The flux gates of the Lambert Glacial sub-basin combined with the Mellor Glacial and the Fisher Glacial sub-basin appear to be the largest outlet of the grounded ice of the LAS. The ice mass transported from the interior region through the three flux gates in total is 43.58 Gt yr^-1, 36.72 Gt yr^-1, and 38.61 Gt yr^-1 respectively for the three time intervals above. The sub-basins in the eastern side appear differently than the western side. The outfluxes of the eastern sub-basins vary from 15.85 to 18.64 Gt yr^-1, while the western outfluxes vary from 15.85 to 18.64 Gt yr^-1.The grounded LAS has discharged ice from 84.55 to 81.60 Gt yr^-1 and to 79.20 Gt yr^-1 during 1980s-1990s and 1990s-2000s. Assuming the snow accumulation distribution is stable, the grounded LAS mass lose has increased 2.95 Gt yr^-1 from 1980s to 1990s and 2.40 Gt yr^-1 from 1990s to 2000s. These results indicate insight into the stability of the Amery Ice Shelf over the last few decades.
机译:最近的大量研究表明,格陵兰岛,南极半岛和南极西部的大型海洋终止出口冰川和冰河的行为发生了动态变化。但是,对南极东部冰原的出口冰川和冰架的观测较少。此外,还导出了1997-2000年间Lambert Glacier-Amery冰架系统(LAS)的最新表面速度图。根据这项研究,表面速度测量提供了过去二十年来LAS的行为和稳定性的更广泛的视图,而不是一次观察期就可以收集到的数据。这项研究使用遥感技术来研究LAS的速度是否发生了重大变化从1980年代末到2010年代末,并评估了在接地线上观察到的质量平衡变化的幅度。为了实现这一目标,测量了1980年代末至2010年代末三个独立时间段的LAS表面速度。在1988-1990年期间,观测到的LAS表面速度范围为0至1300 m yr ^ -1。通过分析沿中心线进行的表面速度测量,在阿默里冰架中部前部发现有轻微的减慢。质量平衡是积雪与地面LAS出水量之间的差,并在降雪期间针对各个子流域进行计算。 1988-1990年,1999-2004年和2007-2011年这三个时间间隔来说明次流域水平下的质量平衡变化。兰伯特冰川子流域的通量闸门与梅勒冰川和费舍尔冰川子流域相结合,似乎是LAS碎冰的最大出口。在上述三个时间间隔内,从内部区域通过三个通量闸门传输的冰量分别为43.58 Gt yr ^ -1、36.72 Gt yr ^ -1和38.61 Gt yr ^ -1。东侧的子流域与西侧的流域有所不同。东部子流域的出水量从15.85 Gt yr ^ -1变化到18.64 Gt yr ^ -1,西部子流域的流失从15.85 Gt yr ^ -1变化到18.64 Gt yr ^ -1,地面LAS的出冰量从84.55到81.60 Gt yr ^ -1和在1980年代至1990年代和1990年代至2000年代达到79.20 Gt yr ^ -1。假设积雪分布稳定,则地面LAS质量损失从1980年代到1990年代增加了2.95 Gt yr ^ -1,从1990年代到2000年代增加了2.40 Gt yr ^ -1。这些结果表明了对过去几十年来阿默里冰架的稳定性的了解。

著录项

  • 作者

    Chi Zhaohui 1982-;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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