GSTDTAP  > 地球科学
DOI10.1016/j.atmosres.2020.105135
Novel approach to integrate daily satellite rainfall, with in-situ rainfall, Upper Tekeze Basin, Ethiopia
Mewcha Amha Gebremedhin, Maciek W. Lubczynski, Ben H.P. Maathuis, Daniel Teka
2020-07-16
发表期刊Atmospheric Research
出版年2020
英文摘要

The daily rainfall is the most important and demanded input of water resources studies, which are challenged by typical low density and/or poor quality of in-situ observations. However, the satellite earth observation, through freely available, web-based products, can provide complementary rainfall data. Such data is however, typically affected by substantial error, particularly at daily temporal resolution. Therefore, effective methods and protocols of rainfall downscaling, validation, and bias-correction are needed. The aims of this study were to: i) validate two downscaled satellite-derived rainfall products, CHIRPS and MPEG, against in-situ observations; ii) merge the downscaled products with in-situ observations and evaluate them to select better performing one. This study rainfall assessment was conducted on daily basis, at topographically complex, Upper Tekeze Basin (UTB), separately for the wet and dry seasons, within 1 January 2015–31 December 2018. Validation of the products, downscaled by nearest-neighbor (NN) and bilinear (BL) methods, was carried out using descriptive statistics, categorical statistics and bias decomposition methods, introducing novel protocol with new bias indicators for each of the evaluation methods. It showed large biases of CHIRPS and of MPEG, larger for CHIRPS than for MPEG, larger in dry than in wet season and slightly larger for NN than for BL. To correct biases of the downscaled CHIRPS and MPEG, each was merged with the in-situ observed rainfall, applying Geographically Weighted Regression (GWR) algorithm, using rainfall dependence on altitude as explanatory variable. The GWR-merging method substantially improved the accuracy of the MPEG and CHIRPS, with slightly better final accuracy of MPEG than of CHIRPS and better in wet than in dry season. This study confirmed that GWR-merged method could substantially reduce daily bias of satellite rainfall products, even in such topographical complex area as the UTB. Further improvement of the method application, can be achieved by densifying rain-gauge network and eventually by adding accuracy-effective explanatory variable(s).

领域地球科学
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/284155
专题地球科学
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Mewcha Amha Gebremedhin, Maciek W. Lubczynski, Ben H.P. Maathuis, Daniel Teka. Novel approach to integrate daily satellite rainfall, with in-situ rainfall, Upper Tekeze Basin, Ethiopia[J]. Atmospheric Research,2020.
APA Mewcha Amha Gebremedhin, Maciek W. Lubczynski, Ben H.P. Maathuis, Daniel Teka.(2020).Novel approach to integrate daily satellite rainfall, with in-situ rainfall, Upper Tekeze Basin, Ethiopia.Atmospheric Research.
MLA Mewcha Amha Gebremedhin, Maciek W. Lubczynski, Ben H.P. Maathuis, Daniel Teka."Novel approach to integrate daily satellite rainfall, with in-situ rainfall, Upper Tekeze Basin, Ethiopia".Atmospheric Research (2020).
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