基于SAR Sentinel-1观测监测小湖的时空动态:以越南Nui Coc湖为例

IF 2.4 Q2 GEOSCIENCES, MULTIDISCIPLINARY VIETNAM JOURNAL OF EARTH SCIENCES Pub Date : 2021-07-23 DOI:10.15625/2615-9783/16315
Binh Pham Duc, Son Tong Si
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引用次数: 5

摘要

本研究首次以高空间(20m)和时间分辨率(每两周一次)估计了位于北越泰阮省的Nui Coc湖地表水范围的变化。分类方法是在对SAR Sentinel-1信号的后向散射系数直方图使用Otsu阈值算法的基础上开发的。2016-2020年期间,总共处理了150多幅SAR Sentinel-1图像。除极端干旱和洪水条件外,该湖地表水范围的平均最小值和最大值分别为17平方公里(5月)和24平方公里(9月/10月),Nui Coc湖的地表水在过去五年中保持稳定。分类结果与来自自由云哨兵2号图像的相应地表水范围图、来自陆地卫星全球地表水(GSW)产品的产状图以及现场降水数据非常一致。与哨兵2号相比,哨兵1号探测到的湖面范围减少了4-4.5%。我们的结果与GSW产品得出的结果相似,但Sentinel-1数据提供了更多细节,因为其空间分辨率高于Landsat。这项研究清楚地表明了SAR Sentinel-1数据在低成本监测小湖水面方面的巨大潜力,尤其是在热带地区。
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Monitoring spatial-temporal dynamics of small lakes based on SAR Sentinel-1 observations: a case study over Nui Coc Lake (Vietnam)
For the first time, this study estimates the variation of surface water extent of Nui Coc Lake located in Thai Nguyen province in North Vietnam at high spatial (20 m) and temporal resolution (bi-weekly). The classification methodology was developed based on the use of the Otsu threshold algorithm on the histogram of the backscatter coefficient of the SAR Sentinel-1 signal. Totally, more than 150 SAR Sentinel-1 images have been processed for the 2016-2020 period. Except for extreme drought and flood conditions, the average minimum and maximum of the lake’s surface water extent are 17 km2 (in May) and 24 km2 (in September/October), respectively, and Nui Coc Lake’s surface water was stable during the last five years. Classification results are in good agreement with the corresponding surface water extent maps derived from free-cloud Sentinel-2 images, with the occurrence map derived from the Landsat-derived Global Surface Water (GSW) product, and with in situ precipitation data. Compared to Sentinel-2, the lake’s surface water extent detected from Sentinel-1 is 4-4.5% less. The water occurrence is similar between our results and that derived from the GSW product, but Sentinel-1 data provide more details as its spatial resolution is higher than Landsat. This study clearly shows the great potential of SAR Sentinel-1 data for monitoring small lake’s water surface at low costs, especially over tropical regions.
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来源期刊
VIETNAM JOURNAL OF EARTH SCIENCES
VIETNAM JOURNAL OF EARTH SCIENCES GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
20.00%
发文量
0
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