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Velocity Variations of the Kaskawulsh Glacier, Yukon Territory, 2009-2011.

机译:育空地区Kaskawulsh冰川的速度变化,2009-2011年。

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摘要

Laser altimetry and satellite gravity surveys indicate that the St Elias Icefields are currently losing mass and are among the largest non-polar sea level contributors in the world. However, a poor understanding of glacier dynamics in the region is a major hurdle in evaluating regional variations in ice motion and the relationship between changing surface conditions and ice flux. This study combines in-situ dGPS measurements and advanced Radarsat-2 (RS-2) processing techniques to determine daily and seasonal ice velocities for the Kaskawulsh Glacier from summer 2009 to summer 2011. Three permanent dGPS stations were installed along the centreline of the glacier in 2009, with an additional permanent station on the South Arm in 2010. The Precise Point Positioning (PPP) method is used to process the dGPS data using high accuracy orbital reconstruction. RS-2 imagery was acquired on a 24-day cycle from January to March 2010, and from October to March 2010-2011 in a combination of ultra-fine and fine beam modes.;Seasonal velocity regimes are readily identifiable in the dGPS results, with distinct variations in both horizontal velocity and vertical motion. The Spring Regime consists of an annual peak in horizontal velocity that corresponds closely with the onset of the melt season and progresses up-glacier, following the onset of melt at each station. The Summer Regime sees variable horizontal velocity and vertical uplift, superimposed on a long-term decline in motion. The Fall Regime sees a gradual slowing at all stations with little variation in horizontal velocity or vertical position. Rapid but short accelerations lasting up to 10 days were seen in the Winter regimes in both 2010 and 2011, occurring at various times throughout each regime. These events initiated at the Upper Station and progress down-glacier at propagation speeds up to 16,380 m day-1 and were accompanied by vertical uplift lasting for similar periods. Three velocity maps, one from the winter of 2010 and two from the fall/winter of 2011, produced from speckle tracking were validated by comparison with dGPS velocity, surface flow direction, and bedrock areas of zero motion, with an average velocity error of 2.0% and average difference in orientation of 4.3°.
机译:激光测高仪和卫星重力调查表明,圣埃利亚斯冰原目前正在流失质量,属于世界上最大的非极性海平面贡献者。然而,对该地区冰川动力学的了解不足是评估冰运动区域变化以及地表条件变化与冰通量之间关系的主要障碍。这项研究结合了原地dGPS测量和先进的Radarsat-2(RS-2)处理技术来确定2009年夏季至2011年夏季Kaskawulsh冰川的每日和季节性冰速。在冰川中心线安装了三个永久性dGPS站2009年,又在2010年在南臂(South Arm)增设了一个常设站。精确点定位(PPP)方法用于通过高精度轨道重建处理dGPS数据。从2010年1月至2010年3月,以及从2010年10月至2010年3月,以超细光束模式和细光束模式相结合,以24天为周期获取了RS-2图像。在水平速度和垂直运动方面都有明显的变化。春季制度由水平速度的年度峰值组成,该峰值与融化季节的开始密切相关,并随着每个站点融化的开始而逐渐上升到冰川。夏季政权看到水平速度和垂直隆起变化,并叠加了长期运动下降。秋季政权在所有测站上逐渐减慢,水平速度或垂直位置几乎没有变化。在2010年和2011年的冬季政权中,持续时间长达10天的快速但短暂的加速出现在整个政权的不同时间。这些事件始于上层站,并以高达16380 m day-1的传播速度向冰川下移,并伴有持续相似时期的垂直隆升。通过与dGPS速度,表面流向和零运动的基岩区域进行比较,验证了斑点跟踪生成的三个速度图,一个是2010年冬季,两个是2011年秋冬季,平均速度误差为2.0 %和4.3°的平均取向差。

著录项

  • 作者

    Darling, Samantha.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Geography.;Geophysics.
  • 学位 M.Sc.
  • 年度 2012
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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