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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Enhanced winter snowmelt in the Antarctic Peninsula: Automatic snowmelt identification from radar scatterometer
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Enhanced winter snowmelt in the Antarctic Peninsula: Automatic snowmelt identification from radar scatterometer

机译:南极半岛增强冬季雪花:雷达散射仪的自动雪地识别

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摘要

Surface snowmelt affects the energy balance through melt-albedo feedback and may endanger the ice shelves in the Antarctic Peninsula (AP) through hydrofracture. Here, we introduce an automatic snowmelt identification algorithm based on Quick Scatterometer and Advanced Scatterometer. The proposed method can provide self-adaptive thresholds for snowmelt detection based on Rosin thresholding, and is able to detect weak melt signals with a wavelet denoising procedure. Results suggest the AP surface snowmelt has slightly declined during 1999-2018 in the context of recent cooling. However, winter melt index (i.e., melt days times the area of melting) has significantly increased (above the 99% confidence level) with a rate of 83% decade(-1). Unprecedented winter snowmelt was found in 2015/2016 when about one-third of the AP experienced snowmelt in late May. This may be attributed to the intrusions of marine air and the enhanced fohn-driven warming resulted from the abnormal northwesterly flow driven by a significant deepening of the Amundsen Sea Low.
机译:表面雪光通过熔融 - 反馈反馈影响能量平衡,并可以通过水力磨损危及南极半岛(AP)中的冰架。在这里,我们介绍了一种基于快速散射仪和高级散射计的自动雪花识别算法。所提出的方法可以基于松香阈值化提供用于散雪频道检测的自适应阈值,并且能够通过小波去噪程序检测弱熔体信号。结果表明,在近期冷却的背景下,1999 - 2018年的AP表面雪光略有下降。然而,冬季熔体指数(即熔化的熔化日期)显着增加(高于99%的置信水平),速度为83%十年(-1)。在2015/2016年在5月下旬,大约三分之一的AP有三分之一的AP有三分之一的雪地院发现了前所未有的冬季雪花。这可能归因于海洋空气的入侵和增强的FOHN驱动的变暖,由由Amundsen海的显着深化驱动的异常的北北部流动引发。

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