SWOT分析
海洋表面地形
遥感
海面温度
地表水
无人机
海洋学
环境科学
地质学
海洋工程
工程类
环境工程
业务
营销
作者
Félix Girard,Laurent Kergoat,I. Maïnassara,Maxime Wubda,Edwige Dayangnéwendé Nikièma,Amadou Abdourhamane Touré,Julien Renou,Maxime Vayre,Nicolas Taburet,Nicolas Picot,Manuela Grippa
标识
DOI:10.1109/jstars.2025.3570859
摘要
The volume variability and the hydrological functioning of the thousands of lakes in the Sahelian region are poorly known. The recently launched Surface Water and Ocean Topography (SWOT) mission carrying a wide-swath Ka-band radar interferometer offers new opportunities for large-scale monitoring of lake dynamics, and overcomes the spatial coverage limitations of the nadir altimeters. Here, we evaluate the performance of two SWOT data products, namely the PIXel Cloud (PIXC) and the Lake Single Pass (LakeSP), over sixteen small and medium-sized lakes in the Central Sahel. For both products, Water Surface Elevations (WSEs) are in excellent agreement with in-situ data on two lakes, with 1-σ errors (68th percentile of absolute errors) between 0.06 and 0.11 m, consistently with the mission science requirements. When compared to Sentinel-3 WSE, the PIXC product shows better results than LakeSP, with 1- σ differences of 0.16 m and 0.32 m, respectively. SWOT LakeSP Water Surface Area (WSA) estimates show a general overestimation with a median bias of 17.2% compared to Sentinel2 measurements. SWOT pixel classification errors are found to affect both products, especially for LakeSP. Elevation-area relationships derived from combined SWOT PIXC and Sentinel-2 compare well with in-situ (RMSEs below 0.28 m), highlighting the capabilities of SWOT for monitoring lake volume changes once complemented by external water masks. Finally, annual water level amplitude estimates of more than 600 lakes of different sizes are derived using SWOT PIXC, emphasizing the spatial coverage potential of SWOT.
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