Radarsat Constellation Mission Derived Winter Glacier Velocities for the St. Elias Icefield, Yukon/Alaska: 2022 and 2023

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-01-02 DOI:10.1080/07038992.2023.2264395
Wesley Van Wychen, Courtney Bayer, Luke Copland, Erika Brummell, Christine Dow
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Abstract

Here we use high resolution (5 m) Radarsat Constellation Mission (RCM) imagery acquired in winters 2022 and 2023 to determine motion across glaciers of the St. Elias Icefield in Yukon/Alaska. Our regional velocity mapping largely conforms with previous studies, with faster motion (>600 m/yr) for the glaciers originating in the Yukon that drain southward and westward to the coast of Alaska and relatively slower motion (100–400 m/yr) for the land terminating glaciers that drain eastward and northeastward and stay within the Yukon. We also identify two new glacier surges within the icefields: the surge of Nàłùdäy (Lowell) Glacier in Winter 2022, and Chitina Glacier in Winter 2023, and track the progression of each surge from January to March utilizing ∼4-day repeat RCM imagery. To evaluate the quality of RCM-derived velocities, we compare our results with 50 simultaneous measurements at three on-ice dGPS stations located on two Yukon glaciers and find the average absolute difference between measurements to be 6.6 m/yr. Our results demonstrate the utility of RCM data to determine glacier motion across large regions with complex topography, to support process-based studies of fast flowing and surge-type glaciers and continue the legacy of velocity products derived from the Radarsat-2 mission.
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Radarsat星座任务推导出育空/阿拉斯加圣埃利亚斯冰原冬季冰川速度:2022年和2023年
在这里,我们使用2022年和2023年冬季获得的高分辨率(5米)雷达卫星星座任务(RCM)图像来确定育空/阿拉斯加圣埃利亚斯冰原冰川的运动。我们的区域速度图在很大程度上与之前的研究一致,育空地区的冰川向南和向西流向阿拉斯加海岸的冰川运动更快(约600米/年),而在育空地区东部和东北部流向陆地的冰川运动相对较慢(100-400米/年)。我们还在冰原内发现了两个新的冰川涌流:2022年冬季Nàłùdäy (Lowell)冰川的涌流和2023年冬季Chitina冰川的涌流,并利用~ 4天重复RCM图像跟踪了每次涌流从1月到3月的进展。为了评估rcm得出的速度的质量,我们将结果与位于育空地区两个冰川上的三个冰上dGPS站的50个同时测量结果进行了比较,发现测量结果之间的平均绝对差为6.6米/年。我们的研究结果证明了RCM数据在确定具有复杂地形的大区域冰川运动方面的实用性,支持基于过程的快速流动和涌浪型冰川研究,并继续Radarsat-2任务获得的速度产品的遗产。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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