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A First Assessment of IceBridge Snow and Ice Thickness Data Over Arctic Sea Ice

机译:北极海冰上IceBridge冰雪厚度数据的首次评估

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We present a first assessment of airborne laser and radar altimeter data over snow-covered sea ice, gathered during the National Aeronautics and Space Administration Operation IceBridge Mission. We describe a new technique designed to process radar echograms from the University of Kansas snow radar to estimate snow depth. We combine IceBridge laser altimetry with radar-derived snow depths to determine sea ice thickness. Results are validated through comparison with direct measurements of snow and ice thickness collected in situ at the Danish GreenArc 2009 sea ice camp located on fast ice north of Greenland. The IceBridge instrument suite provides accurate measurements of snow and ice thickness, particularly over level ice. Mean IceBridge snow and ice thickness agree with in situ measurements to within $sim$0.01 and $sim$ 0.05 m, respectively, while modal snow and ice thickness estimates agree to within 0.02 and 0.10 m, respectively. IceBridge snow depths were correlated with in situ measurements ($R = 0.7$, for an averaging length of 55 m). The uncertainty associated with the derived IceBridge sea ice thickness estimates is 0.40 m. The results demonstrate the retrieval of both first-year and multiyear ice thickness from IceBridge data. The airborne data were however compromised in heavily ridged ice where snow depth, and hence ice thickness, could not be measured. Techniques developed as part of this study will be used for routine processing of IceBridge retrievals over Arctic sea ice. The limitations of the GreenArc study are discussed, and recommendations for future validation of airborne measurements via field activities are provided.
机译:我们将对在美国航空航天局冰桥任务期间收集的冰雪覆盖的海冰上的机载激光和雷达高度计数据进行首次评估。我们描述了一种旨在处理来自堪萨斯大学雪地雷达的雷达回波图以估算雪深的新技术。我们将IceBridge激光测高仪与雷达得出的雪深结合起来,以确定海冰厚度。通过与直接测量在格陵兰以北快速冰上的丹麦GreenArc 2009海冰营地现场收集的冰雪厚度进行比较,验证了结果。 IceBridge仪器套件可准确测量雪和冰的厚度,尤其是在冰层上。 IceBridge的平均积雪和冰层厚度与原位测量值分别在$ sim $ 0.01和$ sim $ 0.05 m以内,而模态雪和冰层厚度估计分别在0.02和0.10 m以内。 IceBridge的积雪深度与原位测量值相关(R = 0.7 $,平均长度为55 m)。与得出的IceBridge海冰厚度估计值相关的不确定性为0.40 m。结果表明,可以从IceBridge数据中检索第一年和多年的冰厚。但是,在无法测量雪深和冰厚的重脊冰中,机载数据受到损害。作为这项研究的一部分开发的技术将用于北极海冰上IceBridge取回的常规处理。讨论了GreenArc研究的局限性,并提供了通过野外活动对机载测量进行未来验证的建议。

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