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Northern Hemisphere surface freeze–thaw product from Aquarius L-band radiometers

机译:水瓶座L波段辐射计对北半球表面的冻融产品

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In the Northern Hemisphere, seasonal changes in surface freeze–thaw (FT) cycles are an important component of surface energy, hydrological and eco-biogeochemical processes that must be accurately monitored. This paper presents the weekly polar-gridded Aquarius passive L-band surface freeze–thaw product (FT-AP) distributed on the Equal-Area Scalable Earth Grid version 2.0, above the parallel 50° N, with a spatial resolution of 36 km × 36 km. The FT-AP classification algorithm is based on a seasonal threshold approach using the normalized polarization ratio, references for frozen and thawed conditions and optimized thresholds. To evaluate the uncertainties of the product, we compared it with another satellite FT product also derived from passive microwave observations but at higher frequency: the resampled 37 GHz FT Earth Science Data Record (FT-ESDR). The assessment was carried out during the overlapping period between 2011 and 2014. Results show that 77.1 % of their common grid cells have an agreement better than 80 %. Their differences vary with land cover type (tundra, forest and open land) and freezing and thawing periods. The best agreement is obtained during the thawing transition and over forest areas, with differences between product mean freeze or thaw onsets of under 0.4?weeks. Over tundra, FT-AP tends to detect freeze onset 2–5?weeks earlier than FT-ESDR, likely due to FT sensitivity to the different frequencies used. Analysis with mean surface air temperature time series from six in situ meteorological stations shows that the main discrepancies between FT-AP and FT-ESDR are related to false frozen retrievals in summer for some regions with FT-AP.
机译:在北半球,表面冻融循环的季节性变化是表面能,水文和生态生物地球化学过程的重要组成部分,必须对其进行精确监测。本文介绍了分布在等面积可扩展地球网格版本2.0上,平行于50°N以上,分布分辨率为36 km×的每周极地网格水瓶座L型带状表面冻融产品(FT-AP)。 36公里FT-AP分类算法基于季节性阈值方法,使用归一化极化率,冷冻和解冻条件参考以及优化阈值。为了评估产品的不确定性,我们将其与同样从被动微波观测获得但频率更高的另一种卫星FT产品进行了比较:重新采样的37 GHz FT FT地球科学数据记录(FT-ESDR)。该评估是在2011年至2014年的重叠期间进行的。结果显示,其77.1%的公共网格单元的一致性好于80%。它们的差异随土地覆盖类型(苔原,森林和开阔土地)以及冻融期的不同而不同。在融化过渡期间和整个森林地区都能获得最好的一致性,产品平均冻结或解冻发作之间的差异在0.4周以下。在苔原上,FT-AP倾向于比FT-ESDR提前2-5周检测到冰冻发作,这可能是由于FT对所使用的不同频率敏感。对六个现场气象站的平均地表气温时间序列进行分析,结果表明,某些地区使用FT-AP的地区,FT-AP和FT-ESDR之间的主要差异与夏季的假冰冻恢复有关。

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