Evaluation of the Performance of Multi-Source Satellite Products in Simulating Observed Precipitation over the Tensift Basin in Morocco
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Data Collection
2.2.1. Weather Station Data
2.2.2. Satellite and Reanalysis Data
Precipitation Estimation from Remotely Sensed Information using Artificial Neural Networks (PERSIANN)
Precipitation Estimation from Remotely Sensed Information using Artificial Neural Networks—Climate Data Record (PERSIANN CDR)
Tropical Rainfall Measuring Mission (TRMM)
African Rainfall Climatology Version 2 (ARC2)
Rainfall Estimation Algorithm Version 2 (RFE2)
The Climate Hazards Group Infrared Precipitation with Stations (CHIRPS)
ECMWF Reanalysis 5th Generation (ERA5)
2.3. Data Analysis
2.3.1. NASH (Nash–Sutcliffe)
2.3.2. Bias
2.3.3. Root-Mean-Square Error (RMSE)
2.3.4. Root-Mean-Square Deviation (RMSD)
2.3.5. Standard Deviation
2.3.6. Correlation Coefficient (R)
2.3.7. Coefficient of Determination (R2)
2.3.8. Standardized Precipitation Index (SPI)
3. Results
3.1. Annual Cumulative Satellite-Based Average and Cumulative Rainfall
3.2. Evaluation of Daily Precipitation
3.2.1. Evolution of Different Satellite Products of the Corresponding Pixel of Each Rain Gauge
3.2.2. Classical Metrics of Daily Satellite Precipitation and the Six Weather Station Observations in the Tensift Basin
Tachedert (2343 m)
Imskerbour (1404 m)
Asni (1170 m)
Grawa (550 m)
Agdal (489 m)
Agafay (487 m)
3.3. Evaluation of Monthly Precipitation
3.3.1. Evolution of Different Satellite Products
3.3.2. Classical Metrics of Monthly Satellite Precipitation and the Six Weather Station Observations in the Tensift Basin
Tachedert (2343 mm)
Imskerbour (1404 mm)
Asni (1170 m)
Grawa (550 m)
Agdal (489 m)
Agafay (487 m)
3.4. Evaluation of Annual Rainfall
3.4.1. Evolution of Different Satellite Products
3.4.2. Classical Metrics of Annual Satellite Rainfall and the Six Weather Station Observations in the Tensift Basin
Tachedert (2343 m)
Imskerbour (1404 m)
Asni (1170 m)
Grawa (550 m)
Agdal (489 m)
Agafay (487 m)
3.5. Standardized Precipitation Index of Monthly Precipitation over the Tensift Basin
3.5.1. Tachedert (2343 m)
3.5.2. Imskerbour (1404 m)
3.5.3. Asni (1170 m)
3.5.4. Grawa (550 m)
3.5.5. Agdal (489 m)
3.5.6. Agafay (487 m)
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- The Intergovernmental Panel on Climate Change (IPCC), AR6, Synthesis Report: Climate Change 2022. Available online: https://www.ipcc.ch/report/sixth-assessment-report-cycle/ (accessed on 20 October 2021).
- Habito, N.A.; Morabbi, D.; Ouazar, A.; Bouziane, M.D.; Hasnaoui, H. CHIRPS precipitation open data for drought monitoring: Application to the Tensift basin, Morocco. J. Appl. Remote Sens. 2020, 14, 034526. [Google Scholar] [CrossRef]
- Schilling, J.; Freier, K.P.; Hertig, E.; Scheffran, J. Climate change, vulnerability, and adaptation in North Africa with focus on Morocco. Agric. Ecosyst. Environ. 2021, 156, 12–26. [Google Scholar] [CrossRef]
- Driouech, F. Distribution des Précipitations Hivernales sur le Maroc Dans le Cadre d’un Changement Climatique: Descent échelle et Incertitudes. Ph.D. Thesis, Institut National Polytechnique de Toulouse, Toulouse, France, 2010. Available online: https://oatao.univ-toulouse.fr/7237/ (accessed on 15 October 2021).
- Alves de Souza, B.; da Silva Rocha Paz, I.; Ichiba, A.; Willinger, B.; Gires, A.; Carlos Cesar Amorim, J.; de Miranda Reis, M.; Tisserand, B.; Tchiguirinskaia, I.; Schertzer, D. Multi-hydro hydrological modelling of a complex peri-urban catchment with storage. Hydrol. Sci. J. 2018, 63, 1619–1635. [Google Scholar] [CrossRef]
- Sauvageot, H. Mesures Hydrologiques. Laboratoire d’Aérologie Université Paul Sabatier, Toulouse. La Houille Blanche, 1983, N° 5/6- 330-338. Available online: https://www.univ-tlse3.fr/laboratoire-d-aerologie-1 (accessed on 20 October 2021).
- Roca, R.P.; Chambon, I.; Jobard, P.E.; Kirstetter, M.; Gosset, J.; Berges, C. Comparing Satellite and Surface Rainfall Products over West Africa at Meteorologically Relevant Scales during the AMMA Campaign Using Error Estimates. J. Appl. Meteorol. Climatol. 2009, 49, 715–731. [Google Scholar] [CrossRef]
- Delahaye, F. Analyse Comparative des Différents Produits Satellitaires D’estimation des Précipitations en Amazonie Brésilienne. 2003. Available online: https://tel.archives-ouvertes.fr/tel-00824885 (accessed on 15 September 2021).
- Giorgio, F.C.; Jones, G.; Asrar, R. L’expérience CORDEX: Répondre aux Besoins D’information Climatologique à L’échelle Régionale. Bulletin De L’Omm 2009, 58, 175. Available online: https://public.wmo.int/fr/bulletin/l%E2%80%99exp%C3%A9rience-cordex-r%C3%A9pondre-aux-besoins-d%E2%80%99information-climatologique-%C3%A0-l%E2%80%99%C3%A9chelle-r%C3%A9gionale (accessed on 9 June 2021).
- Moucha, A.; Hanich, L.; Tramblay, Y.; Saaidi, A.; Gascoin, S.; Martin, E.; Le Page, M.; Bouras, E.; Szczypta, C.; Jarlan, L. Present and Future High-Resolution Climate Forcings over Semiarid Catchments: Case of the Tensift (Morocco). Atmosphere 2021, 12, 370. [Google Scholar] [CrossRef]
- TREMA. Le Basin Du Versant Du Tensift. 2020. Available online: https://www.lmi-trema.ma/contexte/le-bassin-versant-du%20tensift/ (accessed on 14 July 2021).
- Er-Raki, S.; Amazirh, A.; Ayyoub, A.; Khabba, S.; Merlin, O.; Ezzahar, J.; Chehbouni, A. Integrating Thermal Surface Temperature into Penman Monteith Model for estimating evapotranspiration and crop water stress of orange orchard in semi-arid region. Acta Hortic. 2018, 1197, 89–96. [Google Scholar] [CrossRef]
- El Khalki, E.M.; Tramblay, Y.; El Mehdi Saidi, M.; Bouvier, C.; Hanich, L.; Benrhanem, M.; Alaouri, M. Comparison of modeling approaches for flood forecasting in the High Atlas Mountains of Morocco. Arab. J. Geosci. 2018, 11, 1–15. [Google Scholar] [CrossRef]
- Baba, M.W.; Gascoin, S.; Jarlan, L.; Simonneaux, V.; Hanich, L. Variations of the Snow Water Equivalent in the Ourika Catchment (Morocco) over 2000–2018 Using Downscaled MERRA-2 Data. Water 2018, 10, 1120. [Google Scholar] [CrossRef] [Green Version]
- The Center for Hydrometeorology and Remote Sensing (CHRS). CHRS Irain. Available online: http://irain.eng.uci.edu/ (accessed on 12 July 2021).
- The Center for Hydrometeorology and Remote Sensing (CHRS). Date Portal. Available online: http://chrsdata.eng.uci.edu/ (accessed on 12 July 2021).
- The Center for Hydrometeorology and Remote Sensing (CHRS). CHRS Rain Sphere. Available online: http://rainsphere.eng.uci.edu/ (accessed on 12 July 2021).
- Nguyen, P.; Ombadi, M.; Sorooshian, S.; Hsu, K.; AghaKouchak, A.; Braithwaite, D.; Ashouri, H.; Thorstensen, A.R. The Persiann family of global satellite precipitation data: A review and evaluation of products. Hydrol. Earth Syst. Sci. 2018, 22, 5801–5816. [Google Scholar] [CrossRef] [Green Version]
- Hadria, R.; Boudhar, A.; Ouatiki, H.; Lebrini, Y.; Elmansouri, L.; Gadouali, F.; Lionboui, H.; Benabdelouahab, T. Combining Use of TRMM and Ground Observations of Annual Precipitations for Meteorological Drought Trends Monitoring in Morocco. Am. J. Remote Sens. 2019, 7, 25–34. [Google Scholar] [CrossRef]
- Milewski, A.; Elkadiri, R. Durham, M. Assessment and Comparison of TMPA Satellite Precipitation. Products in Varying Climatic and Topographic Regimes in Morocco. Remote Sens. 2015, 7, 5697–5717. [Google Scholar] [CrossRef] [Green Version]
- Serrat-Capdevila, A.; Merino, M.; Valdes, J.B.; Durcik, M. Evaluation of the Performance of Three Satellite Precipitation Products over Africa. Remote Sens. 2016, 8, 836. [Google Scholar] [CrossRef] [Green Version]
- Ouatiki, H.; Boudhar, A.; Tramblay, Y.; Jarlan, L.; Benabdelouhab, T.; Hanich, L.; El Meslouhi, M.R.; Chehbouni, A. Evaluation of TRMM 3B42 V7 Rainfall Product over the Oum Er Rbia Watershed in Morocco. Climate 2017, 5, 1. [Google Scholar] [CrossRef]
- NASA. Earth Data. Available online: https://earthdata.nasa.gov/ (accessed on 12 July 2021).
- Novella, N.S.; Thiaw, W.M. African Rainfall Climatology Version 2 for Famine Early Warning systems. J. Appl. Meteorol. Climatol. 2012, 52, 588–606. [Google Scholar] [CrossRef]
- International Research Institute for Climate and Society. Building Sustainable Climate Solutions for Food Security. Available online: https://iri.columbia.edu/ (accessed on 12 July 2021).
- NOAA. CPC GIS Data. Available online: https://www.cpc.ncep.noaa.gov/products/GIS/GIS_DATA/ (accessed on 12 July 2021).
- Funk, C.; Peterson, P.; Landsfeld, M.; Pedreros, D.; Verdin, J.; Shukla, S.; Husak, G.; Rowland, J.; Harrison, L.; Hoell, A.; et al. The climate hazards infrared precipitation with stations—A new environmental record for monitoring extremes. Sci. Data 2015, 2, 1–21. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- USGS. CHIRPS Data. Available online: https://edcintl.cr.usgs.gov/downloads/sciweb1/shared/fews/web/global/monthly/chirps/final/downloa%20ds/monthly/ (accessed on 12 July 2021).
- Gleixner, S.; Demissie, T.; Tefera Diro, G. Did ERA5 Improve Temperature and Precipitation Reanalysis over East Africa? Atmosphere 2020, 11, 996. [Google Scholar] [CrossRef]
- Jiang, Q.; Li, W.; Fan, Z.; He, X.; Sun, W.; Chen, S.; Wen, J.; Gao, J.; Wang, J. Evaluation of the ERA5 reanalysis precipitation dataset over Chinese Mainland. J. Hydrol. 2021, 595, 125660. [Google Scholar] [CrossRef]
- Climate Change Service. ECMWF. Available online: https://cds.climate.copernicus.eu/%23!/home (accessed on 12 July 2021).
- El Orfi, T.; El Ghachi, M.; Lebaut, S. Comparaison des données de précipitation satellitaires avec les données mesurées dans le bassin versant de l’Oued Oum Er Rbia en amont du barrage Ahmed El Hansali (Maroc). In XXXIIIème Colloque de l’Association Internationale de Climatologie: Changement Climatique Et Territoires; Loterr: Rennes, France, 2020; pp. 271–276. [Google Scholar]
- Sun, Q.; Miao, C.; Duan, C.; Ashouri, H.; Sorooshian, S.; Hsu, K.L. A review of global precipitation data sets: Data sources, estimation, and intercomparisons. Rev. Geophys. 2018, 56, 79–107. [Google Scholar] [CrossRef] [Green Version]
- Gadouali, F.; Messouli, M. Evaluation of multiple satellite-derived rainfall products over Morocco. Int. J. Hydrol. Sci. Technol. 2020, 10, 72–89. [Google Scholar] [CrossRef]
- Al Bitar, A.; Najem, L.; Jarlan, M.; Zribi, G.; Faour, G. Precipitation, and soil moisture datasets show severe droughts in the MENA region. Res. Sq. 2020. [Google Scholar] [CrossRef]
- Youssef, H. Modélisation hydrologique du bassin versant de l’oued Rheraya et sa contribution à la recharge de la nappe du Haouz (bassin du Tensift, Maroc). Hydrologie. Ph.D. Thesis, Université Paul Sabatier—Toulouse III, Toulouse, France, 2018. [Google Scholar]
Tachedert | Imskerbour | Asni | Grawa | Agafay | Agdal | |
---|---|---|---|---|---|---|
Min | 0 | 0 | 0 | 0 | 0 | 0 |
Max | 244.2 | 71.2 | 64.6 | 63.4 | 97.4 | 61.3 |
Mean | 1.53 | 1.12 | 0.84 | 0.53 | 0.85 | 0.55 |
Standard Deviation | 6.97 | 4.26 | 3.87 | 2.76 | 4.06 | 2.57 |
Availability of Data | 96.3% | 96.04% | 87.22% | 64.43% | 95.32% | 94.8% |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Salih, W.; Chehbouni, A.; Epule, T.E. Evaluation of the Performance of Multi-Source Satellite Products in Simulating Observed Precipitation over the Tensift Basin in Morocco. Remote Sens. 2022, 14, 1171. https://doi.org/10.3390/rs14051171
Salih W, Chehbouni A, Epule TE. Evaluation of the Performance of Multi-Source Satellite Products in Simulating Observed Precipitation over the Tensift Basin in Morocco. Remote Sensing. 2022; 14(5):1171. https://doi.org/10.3390/rs14051171
Chicago/Turabian StyleSalih, Wiam, Abdelghani Chehbouni, and Terence Epule Epule. 2022. "Evaluation of the Performance of Multi-Source Satellite Products in Simulating Observed Precipitation over the Tensift Basin in Morocco" Remote Sensing 14, no. 5: 1171. https://doi.org/10.3390/rs14051171
APA StyleSalih, W., Chehbouni, A., & Epule, T. E. (2022). Evaluation of the Performance of Multi-Source Satellite Products in Simulating Observed Precipitation over the Tensift Basin in Morocco. Remote Sensing, 14(5), 1171. https://doi.org/10.3390/rs14051171