首页> 外文期刊>Journal of Glaciology >Elevation changes and dynamic provinces of Jakobshavn Isbr?, Greenland, derived using generalized spatial surface roughness from ICESat GLAS and ATM data
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Elevation changes and dynamic provinces of Jakobshavn Isbr?, Greenland, derived using generalized spatial surface roughness from ICESat GLAS and ATM data

机译:使用ICESat GLAS和ATM数据中的广义空间表面粗糙度得出格陵兰Jakobshavn Isbr?的高程变化和动态省份

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Our objective is to map dynamic provinces and investigate dynamic changes in Jakobshavn Isbr?, Greenland. We use an approach that combines structural glaciology and remote-sensing data analysis, facilitated by mathematical characterization of generalized spatial surface roughness that provides parameters related to ice dynamics, deformation and interaction of the ice with bed topography. The approach is applied to derive time series of elevation and roughness changes and to attribute changes during rapid retreat. Different dynamic types of fast- and slow-moving ice can be mapped from ICESat Geoscience Laser Altimeter System data (2003-09) and Airborne Topographic Mapper data, using spatial roughness characterization, validated with ASTER and bed-topographic data. Results of comparative analysis of elevation changes and roughness changes of Jakobshavn south ice stream indicate (1) surface lowering of 10-15 m a~(-1) between 2004 and 2009 and (2) no change in surface roughness and dynamic types. These findings are consistent with a front retreat as part of a fjord-glacier cycle or following warming of fjord water and with climatic warming, but not with an internal dynamic acceleration as a cause of the observed changes during rapid retreat. Relationships to changes in basal water pressure are discussed. All glaciodynamic changes appear to have initiated near the front and propagated up-glacier.
机译:我们的目标是绘制动态省份并调查格陵兰Jakobshavn Isbr?的动态变化。我们使用一种将结构冰川学和遥感数据分析相结合的方法,并通过广义空间表面粗糙度的数学表征进行了简化,该方法提供了与冰动力学,冰变形和床面地形相互作用有关的参数。该方法适用于推导高程和粗糙度变化的时间序列,并在快速撤退期间归因于变化。可以使用ISTER和床面地形数据验证的空间粗糙度特征,从ICESat Geoscience激光测高仪系统数据(2003-09)和机载地形图数据中映射出不同动态类型的快冰和慢冰。 Jakobshavn南冰流的海拔变化和粗糙度变化的比较分析结果表明:(1)2004年至2009年之间,地面下降10-15 m a〜(-1);(2)表面粗糙度和动力类型没有变化。这些发现与峡湾-冰川循环的一部分或在峡湾水变暖和气候变暖之后的前撤相吻合,但与内部动态加速度无关,这是快速撤退期间观察到的变化的原因。讨论了与基础水压变化的关系。所有冰川动力学变化似乎都始于前缘并向上传播到冰川。

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