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Analysis of ERS wind scatterometer time series over Sahel (Mali)

机译:萨赫勒(马里)ERS风散射仪时间序列分析

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摘要

ERS wind scatterometer (WSC) time series are analyzed over different ecoclimatic regions of the African Sahel during the period 1991 - 1995. At 45° incidence angle, the strong seasonality of σ° time series can be directly linked to the successive wet and dry seasons. Moreover, the annual σ° dynamic range was found to be strongly correlated to total rainfall. The interpretation of the σ° temporal plots is carried out by combining a backscattering model to a grassland growth model. Results highlight the decreasing contribution of the herbaceous component with latitude. However, its contribution is far from negligible and can reach 60% in the Soudano-Sahelian subzone at peak herbaceous mass. Additionally, the tree layer has a negligible effect on the radar signal at the scale of a resolution cell. Finally, a simple parametric backscattering model is calibrated and used in an inversion process. The resolution of the inverse problem is based on a 'brute-force' method that consists of exploring all the combinations of parameters of interest. Despite a poor estimation of the temporal variation of the herbaceous mass B{sub}t, the retrieved maximum mass compares well with ground estimates.
机译:在1991年至1995年期间,对非洲萨赫勒地区不同生态气候区域的ERS风散射仪(WSC)时间序列进行了分析。在45°入射角下,σ°时间序列的强季节性可以直接与连续的湿季和干季联系起来。 。此外,还发现年度σ°动态范围与总降雨高度相关。通过将反向散射模型与草地生长模型相结合,可以对σ°时间图进行解释。结果表明,纬度对草本成分的贡献逐渐减小。但是,它的贡献远不容忽视,在Soudano-Sahelian分区达到最高草质质量时可达到60%。此外,在分辨率单元的范围内,树层对雷达信号的影响可以忽略不计。最后,一个简单的参数反向散射模型被校准并用于反演过程。反问题的解决方案基于一种“蛮力”方法,该方法包括探索所有感兴趣参数的组合。尽管对草药质量B {sub} t的时间变化的估算很差,但检索到的最大质量与地面估算值比较好。

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