A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia

Soil moisture data is crucial for enhancing drought monitoring, optimizing water management, refining irriga tion schedules, forecasting floods, and understanding climate change impacts. Despite the existence of long-term global satellite and reanalysis products, the performance of global satellite...

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Autores principales: Alaminie, A. A., Annys, S., Nyssen, J., Jury, M. R., Amarnath, Giriraj, Mekonnen, M. A., Tilahun, Seifu A.
Formato: Journal Article
Lenguaje:Inglés
Publicado: Elsevier 2024
Materias:
Acceso en línea:https://hdl.handle.net/10568/170152
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author Alaminie, A. A.
Annys, S.
Nyssen, J.
Jury, M. R.
Amarnath, Giriraj
Mekonnen, M. A.
Tilahun, Seifu A.
author_browse Alaminie, A. A.
Amarnath, Giriraj
Annys, S.
Jury, M. R.
Mekonnen, M. A.
Nyssen, J.
Tilahun, Seifu A.
author_facet Alaminie, A. A.
Annys, S.
Nyssen, J.
Jury, M. R.
Amarnath, Giriraj
Mekonnen, M. A.
Tilahun, Seifu A.
author_sort Alaminie, A. A.
collection Repository of Agricultural Research Outputs (CGSpace)
description Soil moisture data is crucial for enhancing drought monitoring, optimizing water management, refining irriga tion schedules, forecasting floods, and understanding climate change impacts. Despite the existence of long-term global satellite and reanalysis products, the performance of global satellite products in Ethiopia is underexplored, highlighting a need for comprehensive assessments to effectively utilize these resources and address critical environmental challenges. This research evaluates various operational satellites and reanalysis soil moisture datasets over the Gilgel Abay watershed. The datasets include the European Space Agency’s Climate Change Initiative Soil Moisture (ESA-CCI SM), Soil Moisture and Ocean Salinity (SMOS), NASA’s Soil Moisture Active Passive mission (SMAP Enhanced), the European Centre for Medium-Range Weather Forecasts Fifth Generation Reanalysis (ECMWF ERA5), Climate Forecast System reanalysis (CFSRv2), NASA’s Short-term Prediction Research and Transition Center - Land Information System (SPoRT-LIS), and NASA’s Global Land Data Assimi lation System (GLDAS). After applying bias correction, the Kolmogorov-Smirnov two-sample t-tests, Bonferroni correction, and statistical error metrics, the evaluation reveals that all products, except NASA-GLDAS, effectively capture soil moisture dynamics. SMAP shows superior temporal dynamics, followed by SMOS, ESA-CCI, CFSRv2, LIS and ERA5. Using Spearman’s rank correlation coefficient (rs), SMAP (rs = 0.68) and SMOS (rs = 0.67) identified as the most accurate soil moisture products, with SMOS excelling in spatial representation and closely aligning with the Topographic Wetness Index (TWI). However, the lack of sufficient in situ monitoring networks limits the ability to perform a thorough evaluation. Establishing these networks is essential for improving sat ellite retrievals and modelling in the upper Blue Nile Basin, Ethiopia.
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spelling CGSpace1701522025-12-08T10:06:44Z A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia Alaminie, A. A. Annys, S. Nyssen, J. Jury, M. R. Amarnath, Giriraj Mekonnen, M. A. Tilahun, Seifu A. soil water content satellite observation models watersheds datasets Soil moisture data is crucial for enhancing drought monitoring, optimizing water management, refining irriga tion schedules, forecasting floods, and understanding climate change impacts. Despite the existence of long-term global satellite and reanalysis products, the performance of global satellite products in Ethiopia is underexplored, highlighting a need for comprehensive assessments to effectively utilize these resources and address critical environmental challenges. This research evaluates various operational satellites and reanalysis soil moisture datasets over the Gilgel Abay watershed. The datasets include the European Space Agency’s Climate Change Initiative Soil Moisture (ESA-CCI SM), Soil Moisture and Ocean Salinity (SMOS), NASA’s Soil Moisture Active Passive mission (SMAP Enhanced), the European Centre for Medium-Range Weather Forecasts Fifth Generation Reanalysis (ECMWF ERA5), Climate Forecast System reanalysis (CFSRv2), NASA’s Short-term Prediction Research and Transition Center - Land Information System (SPoRT-LIS), and NASA’s Global Land Data Assimi lation System (GLDAS). After applying bias correction, the Kolmogorov-Smirnov two-sample t-tests, Bonferroni correction, and statistical error metrics, the evaluation reveals that all products, except NASA-GLDAS, effectively capture soil moisture dynamics. SMAP shows superior temporal dynamics, followed by SMOS, ESA-CCI, CFSRv2, LIS and ERA5. Using Spearman’s rank correlation coefficient (rs), SMAP (rs = 0.68) and SMOS (rs = 0.67) identified as the most accurate soil moisture products, with SMOS excelling in spatial representation and closely aligning with the Topographic Wetness Index (TWI). However, the lack of sufficient in situ monitoring networks limits the ability to perform a thorough evaluation. Establishing these networks is essential for improving sat ellite retrievals and modelling in the upper Blue Nile Basin, Ethiopia. 2024-12 2025-01-28T04:52:20Z 2025-01-28T04:52:20Z Journal Article https://hdl.handle.net/10568/170152 en Open Access Elsevier Alaminie, A. A.; Annys, S.; Nyssen, J.; Jury, M. R.; Amarnath, Giriraj; Mekonnen, M. A.; Tilahun, Seifu A. 2024. A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia. Science of Remote Sensing, 10:100173. [doi: https://doi.org/10.1016/j.srs.2024.100173]
spellingShingle soil water content
satellite observation
models
watersheds
datasets
Alaminie, A. A.
Annys, S.
Nyssen, J.
Jury, M. R.
Amarnath, Giriraj
Mekonnen, M. A.
Tilahun, Seifu A.
A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title_full A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title_fullStr A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title_full_unstemmed A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title_short A comprehensive evaluation of satellite-based and reanalysis soil moisture products over the upper Blue Nile Basin, Ethiopia
title_sort comprehensive evaluation of satellite based and reanalysis soil moisture products over the upper blue nile basin ethiopia
topic soil water content
satellite observation
models
watersheds
datasets
url https://hdl.handle.net/10568/170152
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