首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Influence of surface water on coarse resolution C-band backscatter: Implications for freeze/thaw retrieval from scatterometer data
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Influence of surface water on coarse resolution C-band backscatter: Implications for freeze/thaw retrieval from scatterometer data

机译:地表水对粗辨率C波段反向散射的影响:对散射计数据的冻结/解冻检索的影响

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摘要

The freeze/thaw state of permafrost landscapes is an essential variable for monitoring ecological, hydrological and climate processes. Ground surface state can be obtained from satellite data through time series analysis of C-band backscatter from scatterometer and Synthetic Aperture Radar (SAR) observations. Scatterometer data has been used in a variety of studies concerning freeze/thaw retrieval of the land surface. Coarse spatial resolution scatterometer data has great potential for application in this field due to its high temporal resolution (approx. daily observations). In this study, we investigate the influence of sub-grid cell (12.5 km) surface water (ice free and ice covered) on freeze/thaw retrieval based on ASCAT data using a threshold algorithm. We found discrepancies related to the surface water fraction in the detected timing of thawing and freezing of up to 2 days earlier thawing for spring and 3.5 days earlier freezing for autumn for open water fractions of 40% resulting in an overestimation of the frozen season. Results of this study led to the creation of a method for correction of water fraction impact on freeze/thaw data. Additionally, this study demonstrates the applicability of a new approach to freeze/thaw retrieval which has not so far been tested for SAR, specifically Sentinel-1.
机译:永久冻土风景的冻结/解冻状态是监测生态,水文和气候过程的必要变量。通过散射计和合成孔径雷达(SAR)观测的C波段反向散射的时间序列分析,可以从卫星数据获得地面状态。散射仪数据已用于关于陆地表面的冻结/解冻检索的各种研究。由于其高颞分辨率(每日观察),粗糙空间分辨率散射计数据具有很大的应用潜力。在这项研究中,我们研究了使用阈值算法基于ASCAT数据对冻/解冻检索的子网格(12.5 km)表面水(ICE自由和冰)的影响。我们发现与检测到的水平有关的差异,在检测到的分解和冻结最多2天的春天冻结的时间和3.5天冻结秋季的3.5天,为开放水分为40%,导致冷冻季节的高估导致冷冻季节。该研究的结果导致创建一种校正水分效应对冻融/解冻数据的方法。此外,本研究表明,新方法的适用性冻结/解冻检索,该研究尚未对SAR进行测试,特别是Sentinel-1。

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