首页> 外文期刊>Geoscientific Instrumentation, Methods and Data Systems Discussions >In situ measurements of the ice flow motion at Eqip Sermia Glacier using a remotely controlled unmanned aerial vehicle (UAV)
【24h】

In situ measurements of the ice flow motion at Eqip Sermia Glacier using a remotely controlled unmanned aerial vehicle (UAV)

机译:在Eqip Sermia冰川的原位测量使用远程控制的无人驾驶飞行器(UAV)

获取原文
           

摘要

Measuring the ice flow motion accurately is essential to better understand the time evolution of glaciers and ice sheets and therefore to better anticipate the future consequence of climate change in terms of sea level rise. Although there are a variety of remote sensing methods to fill this task, in situ measurements are always needed for validation or to capture high-temporal-resolution movements. Yet glaciers are in general hostile environments where the installation of instruments might be tedious and risky when not impossible. Here we report the first-ever in situ measurements of ice flow motion using a remotely controlled unmanned aerial vehicle (UAV). We used a quadcopter UAV to land on a highly crevassed area of Eqip Sermia Glacier, West Greenland, to measure the displacement of the glacial surface with the aid of an onboard differential GNSS receiver. We measured approximately 70cm of displacement over 4.36h without setting foot onto the glacier – a result validated by applying UAV photogrammetry and template matching techniques. Our study demonstrates that UAVs are promising instruments for in situ monitoring and have great potential for capturing continuous ice flow variations in inaccessible glaciers – a task that remote sensing techniques can hardly achieve.
机译:准确测量冰流动运动对于更好地了解冰川和冰盖的时间演变是必不可少的,因此更好地预期海拔气候变化的未来后果。虽然有各种遥感方法来填充此任务,但始终需要验证或捕获高时间分辨率的移动的原位测量。然而,冰川是一般的敌对环境,即在不可能的情况下,仪器的安装可能是乏味和危险的。在这里,我们使用远程控制的无人驾驶飞行器(UAV)向首先报告冰流动运动的原位测量。我们使用了一条Quadcopter UAV来降落在西格陵兰西格雷米亚的Eqip Sermia冰川的高度裂变区域,借助船上差分GNSS接收器测量冰川表面的位移。我们在4.36H中测量了大约70厘米的位移,而无需将脚放在冰川上 - 通过应用UAV摄影测量和模板匹配技术来验证。我们的研究表明,无人机是有前途的仪器,用于原位监测,并且具有难以进入的冰川中捕获连续冰流变化的潜力 - 这是一项遥感技术几乎无法实现的任务。

著录项

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