arXiv:2504.21670eess.IV2025-04被引 3

融合卫星与实地数据,提升河流洪水再分析精度

Assimilation of SWOT Altimetry Data for Riverine Flood Reanalysis: From Synthetic to Real Data

  • 用集合卡尔曼滤波融合SWOT卫星与实地水位数据
  • 结合两者可更准确还原50公里河段洪水动态
  • 高频卫星数据显著改善洪水模拟可靠性

洪水是全球最常见的灾难之一。遥感技术在灾害应对和提升水动力模型准确性方面具有重要意义。本文展示了地表水与海洋地形测绘(SWOT)任务,尤其是其河流节点产品,在提升加龙河50公里河段洪水再分析精度方面的创新潜力。实验采用基于集合卡尔曼滤波(EnKF)的数据同化策略,实现模型参数的序列更新。结果表明,尽管仅使用SWOT数据有一定改进,但结合实地水位观测可获得最精确的洪水动态表现,涵盖测站及河道全程。研究还分析了不同SWOT重访频率的影响,发现更频繁的同化带来更可靠的洪水再分析。真实事件验证显示,同化SWOT与实地数据能精准再现水位变化,为未来洪水监测系统提供前景。总体强调地球观测数据在改善河床与洪泛区洪水动态表征中的互补优势。

原文摘要 · Abstract (English)

Floods are one of the most common and devastating natural disasters worldwide. The contribution of remote sensing is important for reducing the impact of flooding both during the event itself and for improving hydrodynamic models by reducing their associated uncertainties. This article presents the innovative capabilities of the Surface Water and Ocean Topography (SWOT) mission, especially its river node products, to enhance the accuracy of riverine flood reanalysis, performed on a 50-km stretch of the Garonne River. The experiments incorporate various data assimilation strategies, based on the ensemble Kalman filter (EnKF), which allows for sequential updates of model parameters based on available observations. The experimental results show that while SWOT data alone offers some improvements, combining it with in-situ water level measurements provides the most accurate representation of flood dynamics, both at gauge stations and along the river. The study also investigates the impact of different SWOT revisit frequencies on the models performance, revealing that assimilating more frequent SWOT observations leads to more reliable flood reanalyses. In the real event, it was demonstrated that the assimilation of SWOT and in-situ data accurately reproduces the water level dynamics, offering promising prospects for future flood monitoring systems. Overall, this study emphasizes the complementary strengths of Earth Observation data in improving the representation of the flood dynamics in the riverbed and the floodplains.

洪水模拟数据同化SWOT卫星遥感应用

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