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Remapping annual precipitation in mountainous areas based on vegetation patterns: a case study in the Nu River basin

机译:基于植被格局的山区年降水量重绘-以怒江流域为例

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摘要

Accurate high-resolution estimates of precipitation are vital to improving the understanding of basin-scale hydrology in mountainous areas. The traditional interpolation methods or satellite-based remote sensing products are known to have limitations in capturing the spatial variability of precipitation in mountainous areas. In this study, we develop a fusion framework to improve the annual precipitation estimation in mountainous areas by jointly utilizing the satellite-based precipitation, gauge measured precipitation, and vegetation index. The development consists of vegetation data merging, vegetation response establishment, and precipitation remapping. The framework is then applied to the mountainous areas of the Nu River basin for precipitation estimation. The results demonstrate the reliability of the framework in reproducing the high-resolution precipitation regime and capturing its high spatial variability in the Nu River basin. In addition, the framework can significantly reduce the errors in precipitation estimates as compared with the inverse distance weighted (IDW) method and the TRMM (Tropical Rainfall Measuring Mission) precipitation product
机译:高精度的高分辨率降水估算对于增进对山区流域尺度水文学的理解至关重要。已知传统的插值方法或基于卫星的遥感产品在捕获山区降水的空间变化方面存在局限性。在这项研究中,我们开发了一个融合框架,以通过联合利用基于卫星的降水,量度测得的降水和植被指数来改善山区的年度降水估算。开发内容包括植被数据合并,植被响应建立和降水重新映射。然后将该框架应用于怒江流域的山区进行降水估算。结果证明了该框架在怒江流域再现高分辨率降水方案并捕获其高空间变异性方面的可靠性。此外,与逆距离加权(IDW)方法和TRMM(热带雨量测量任务)降水产品相比,该框架可以大大减少降水估计中的误差。

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